WO2004079987A1 - 暗号化コード管理システム及びデータ処理装置及び電子機器 - Google Patents
暗号化コード管理システム及びデータ処理装置及び電子機器 Download PDFInfo
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- WO2004079987A1 WO2004079987A1 PCT/JP2004/002672 JP2004002672W WO2004079987A1 WO 2004079987 A1 WO2004079987 A1 WO 2004079987A1 JP 2004002672 W JP2004002672 W JP 2004002672W WO 2004079987 A1 WO2004079987 A1 WO 2004079987A1
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- code
- encryption
- data processing
- encrypted
- data
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B1/00—Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
- H04B1/06—Receivers
- H04B1/16—Circuits
- H04B1/20—Circuits for coupling gramophone pick-up, recorder output, or microphone to receiver
- H04B1/202—Circuits for coupling gramophone pick-up, recorder output, or microphone to receiver by remote control
Definitions
- the present invention relates to a data transmission device that wirelessly transmits data after encrypting the data with an encryption code, and an encryption code management system in a data reception device that receives and decrypts the encrypted data.
- the present invention also relates to a data processing device such as a data transmitting device and a data receiving device used in the encryption code management system, and further to an electronic device used in the encryption code management system.
- AV data has been transmitted from AV source devices such as tuners, videos, and DVDs to AV playback devices such as displays and projectors.
- a wireless communication system for AV data to be displayed or output is provided.
- an AV data transmitting device that transmits AV data is connected to an AV source device, and an AV receiving device is connected to an AV reproducing device.
- a wireless communication system for AV data is configured by the AV source apparatus and the AV reproducing apparatus.
- the AV data transmitting device and the AV data receiving device are configured on a one-to-one basis because the AV data has a copyright, and the AV data AV transmission cannot be performed between the transmitting device and the AV data receiving device.
- the configuration of a conventional wireless communication system for AV data is shown in FIG.
- one wireless communication system for AV data is configured.
- the wireless communication system for AV data is output from the AV source device 1 from the antenna 5 11 of the AV data transmitting device 101 connected to the AV source device 1 by wire.
- AV data is transmitted.
- the AV data from the AV source device 1 is received by the AV data receiving device 102 via the antenna 541, and is given to the AV reproducing device 2 connected to the AV data receiving device 102 by wire. To be displayed.
- the remote controller (remote controller) 11 for operating the AV source device 1 When the remote controller (remote controller) 11 for operating the AV source device 1 is operated and an infrared signal is transmitted, the infrared signal is transmitted to the remote controller data receiving section 55 of the AV data receiving apparatus 102. After being received by 3, the signal is converted into a signal for wireless communication and transmitted from the antenna 541. When this signal is received by the antenna 511 of the AV data transmitting apparatus 101, it is converted into an infrared signal and transmitted from the remote control output section 517, and then the infrared signal of the AV source apparatus 1 is transmitted. The AV source device 1 performs the operation received by the receiver 12 and instructed by the remote controller 11.
- the above-described AV data transmitting apparatus 101 is provided with an analog input section 502 for inputting analog AV data such as NTSC and a digital input port for inputting digital signals.
- an input section 501 Analog data is digitized by an A / D converter (hereinafter referred to as “A / D”) 503, encoded by an MPEG 504, and various data are arranged by a data generator 505.
- the error correction coding unit 506 adds an error code, and the data scramble unit 507 encrypts (scrambles) the data.
- the data is transmitted to the AV data receiving side through the path of 5110 and antenna 511.
- the ID used for scrambling in the data scramble unit 507 is stored in the ID storage unit 520.
- the AV data receiving apparatus 102 having the configuration shown in FIG. 39 is directly supplied from the digital input section 501 to the data generating section 505. , RF 542, and BB 543, and the descrambling unit 544 cancels the scramble, and the data analysis unit 545 determines the distribution or lack of AV data.
- the signal is decoded by 546, converted into an analog signal by a DZA converter (hereinafter, referred to as “DZA”) 544, and output as data such as NTSC by an analog output unit 548.
- DZA DZA converter
- the ID used for descrambling by the descrambling unit 544 is stored in the ID storage unit 560.
- digital data When outputting data, data from the data analysis unit 545 is output via the digital output unit analysis unit 549 and the digital output unit 550.
- the AV data receiving apparatus 102 determines in the data analysis section 545 that a packet has not been correctly received. Based on this determination result, the retransmission request packet for the packet that has not been received is generated by the retransmission request packet generation unit 558. Further, the AV data receiving device 102 includes an operation unit 55 1 for inputting a signal for controlling the AV source device 1 and a remote control data receiving unit 55 3 for receiving an infrared signal from the remote control 11. . Then, the data from the operation unit 551 is converted by the input data conversion unit 552, and the signal received by the remote control data reception unit 553 is converted by the remote control data conversion unit 554.
- a packet based on the converted data and a retransmission request packet 1 transmission data is generated from the retransmission request packet from the generation unit 558 by the data generation unit 555, and an error is corrected by the error correction code addition unit 556. A correction code is added. Then, this transmission data is scrambled by the data scramble section 557, and then transmitted via the BB 543, the RF 542 and the antenna 541.
- the AV data transmitter 101 receives the data via the antenna 511 and the RF 510 and the BB 509, the descrambling is canceled by the descrambling unit 512, and the data analyzing unit 513
- the AV data receiving device 102 determines the bucket that has not been correctly received and sorts the data. If a retransmission request is required, the retransmission request packet generation unit 514 requests the AV data to be retransmitted.
- the data for operating the AV source device 1 obtained by the data analysis section 5 13 is converted into a remote control signal by the remote control data analysis section 5 16, and the remote control output section 5 1 7 is output as an infrared signal.
- Digital data other than the remote control signal is output from the digital data output unit 519 via the digital data analysis unit 518.
- the ID codes recorded in the AV data transmitting device 101 and the AV data receiving device 102 constituting the wireless communication system are fixed at A.
- the ID code of the AV data receiving device 103 is fixed at B.
- the AV data receiving apparatus 103 has the function of the AV reproducing apparatus 2 instead of the analog output section 5488 and the digital output section 550.
- the AV data transmission device Since the ID code A of 101 and the ID code B of the AV data receiving device 103 are different, it is impossible to perform wireless transmission between the AV data transmitting device 101 and the AV data receiving device 103. Become.
- wireless transmission of AV data can be realized only with a predetermined combination of AV devices, and a free AV data source can be provided in a wireless free place. You are restricted from enjoying. However, if there is a large number of simultaneous AV data receiving devices that can receive and transmit scrambled and encrypted wirelessly transmitted AV data and perform descrambling and decryption, a large number of AV data receiving devices This can be viewed by anyone, and may infringe the copyright of the creator of the AV source.
- a water heater that transmits and receives an ID between a water heater main body and a remote controller for controlling the same by communication, and allows only the latest remote controller to be used (Japanese Patent Laid-Open No. 7-25555). No. 0 89). Therefore, since only the latest ID code is valid, the same ID code cannot be set to multiple devices. Further, there is provided an intercom in which the extension base unit transmits its own ID and other extension base units receiving this ID use an ID different from the received ID (Japanese Patent Laid-Open No. 11-28). No. 4754).
- the AV data transmitting device 101 and the AV receiving device 102 or the AV data transmitting device 101 and the AV data receiving device 103 are not connected. Communication may not be established between them. In this case, check whether the signal cannot be received due to radio interference such as jamming radio waves, blocking radio waves, differences in wireless channels (including when there are no empty channels), or malfunctioning antennas, and IDs used for encryption and decryption. It is not easy to determine whether communication and display cannot be performed because the codes do not match. Further, even when the ID management method and the ID setting method disclosed in Japanese Patent Application Laid-Open Nos. You can set an ID code in. However, since the ID code can be freely set in each wireless communication system, if the communication probability is not established in the wireless communication system, it is checked whether the cause is radio interference or ID code mismatch. It is difficult.
- an object of the present invention is to provide an encrypted code management system capable of easily confirming a data transmission device and a data reception device capable of mutually transmitting data. It is another object of the present invention to provide a data processing device in a data communication system including such an encrypted code management system. Another object of the present invention is to provide an electronic device used in such a data communication system.
- an encryption code management system provides an encryption code in a plurality of communication systems including a plurality of data processing devices for transmitting and receiving data encrypted by a specific encryption code.
- a code management receiving unit that receives the encrypted code of the data processing device; a code management control unit that compares a plurality of the encrypted codes received by the code management receiving unit; A result output unit for outputting a comparison result in the control unit.
- the data processing device includes a code management transmitting unit that transmits the encrypted code of the device to the electronic device.
- the encrypted code management system of the present invention is characterized in that in the encrypted code management system in a plurality of communication systems including a plurality of data processing devices for transmitting and receiving data encrypted by a specific encryption code.
- a code management receiving unit that receives the encrypted code of the device, a code management control unit that compares a plurality of the encrypted codes received by the code management receiving unit, and a comparison result of the code management control unit.
- a code management transmitting unit that transmits to the data processing device, a code management transmitting unit that transmits the encrypted code of the data processing device to the electronic device; And a code management receiving unit for receiving the comparison result from the control unit, and outputting the comparison result received by the code management receiving unit. And an outputting portion.
- the encrypted code management system of the present invention is an encrypted code management system in a plurality of communication systems including a plurality of data processing devices for transmitting and receiving data encrypted by a specific encryption code.
- a code management receiving unit for receiving the encrypted code of the processing device;
- a code storage unit that stores one or a plurality of the encryption codes; and a code management transmission unit that transmits the encryption codes stored in the code storage unit to the data processing device.
- a code management transmitting unit configured to transmit the encryption code of the device to the electronic device; a code management reception unit configured to receive the encrypted code transmitted from the electronic device;
- a code management control unit that compares the encrypted code received by the receiving unit with the encrypted code of the own device; and a result output unit that outputs a comparison result of the code management control unit.
- FIG. 1 is a diagram for explaining an ID management system according to an embodiment of the present invention
- FIG. 2 is a block diagram showing an internal configuration of an AV data transmitting device of the present invention
- FIG. FIG. 2 is a block diagram showing an internal configuration of the AV data receiving device of the present invention
- FIG. 4 is a block diagram showing the internal configuration of the remote controller for ID management according to the first embodiment
- FIG. 5 is a state transition diagram showing an operation state of each device in the ID management system of the first embodiment
- 6A to 6D are an external view and a display example of the remote controller for ID management of the first embodiment
- FIG. 7 is an external view of an ID management remote controller according to the second embodiment
- FIG. 8 is a flowchart showing the operation of the ID management remote controller according to the second embodiment
- FIG. 9 is a block diagram showing an internal configuration of an ID management remote controller according to the third embodiment.
- FIG. 10 is a flowchart showing the operation of an ID management remote controller according to the third embodiment.
- FIG. 11 is a flowchart showing the operation of an ID management remote controller according to the third embodiment.
- FIGS. 12A to 12I are an external view and a display example of an ID management remote controller according to the third embodiment.
- FIG. 13 is a block diagram showing an internal configuration of an ID management remote controller according to the fourth embodiment.
- FIG. 14 is an external view of an ID management remote controller according to a fourth embodiment
- FIG. 15 is a diagram showing an AV data transmitting device and an AV data receiving device constituting a plurality of AV data wireless communication systems. It is a block diagram showing an example of the relationship,
- FIGS. 16A to 16D are display examples of an ID management remote controller according to the fourth embodiment.
- FIG. 17 is a block diagram showing the internal configuration of an ID management remote controller according to the fifth embodiment.
- FIG. 18 is an external view of an ID management remote controller according to the fifth embodiment.
- FIG. 19 is a diagram showing a relationship between an AV data transmitting device and an AV data receiving device constituting a plurality of AV data wireless communication systems. It is a block diagram showing an example of FIG. 20 is a diagram showing a storage state in an ID storage unit of the remote controller for ID management according to the fifth embodiment;
- FIG. 21 is a display example of the ID management remote controller according to the fifth embodiment.
- FIG. 22 is another display example of the ID management remote controller of the fifth embodiment. Is another display example of the ID management remote controller of the fifth embodiment, and
- FIGS. 24A and 24B are another display examples of the ID management remote controller of the fifth embodiment.
- FIG. 25 is a block diagram showing the internal configuration of the AV data transmitting apparatus of the sixth embodiment.
- FIG. 26 is a block diagram showing the internal configuration of the AV data receiving device of the sixth embodiment.
- FIG. 27 is a state transition diagram showing an operation state of each device in the ID management system according to the sixth embodiment.
- FIG. 28 is a block diagram showing an internal configuration of an AV data receiving apparatus as another example of the sixth embodiment.
- FIG. 29 is a block diagram showing the internal configuration of the AV data transmitting apparatus of the seventh embodiment.
- FIG. 30 is a block diagram showing the internal configuration of the AV data receiving apparatus of the seventh embodiment
- FIG. 31 is a block diagram showing an internal configuration of an ID management remote controller according to the seventh embodiment.
- FIG. 32 is a state transition diagram showing an operation state of each device in the ID management system according to the seventh embodiment.
- FIG. 33 is a block diagram showing the internal configuration of the AV data transmitting apparatus according to the eighth embodiment.
- FIG. 34 is a block diagram showing the internal configuration of the AV data receiving device of the eighth embodiment.
- FIG. 35 is a block diagram showing the internal configuration of the remote controller for ID management according to the eighth embodiment.
- FIG. 36 is a state transition diagram showing an operation state of each device in the ID management system according to the eighth embodiment.
- FIG. 37 is a diagram for explaining a conventional AV data wireless communication system.
- FIG. 38 is a block diagram showing an internal configuration of a conventional AV data transmitting apparatus.
- FIG. 10 is a block diagram showing an internal configuration of a conventional AV data receiving device.
- FIG. 1 is a block diagram showing a configuration of an ID management system according to the present embodiment.
- FIG. 2 and FIG. 3 are block diagrams showing the internal configurations of the AV data transmitting device and the AV data receiving device.
- FIGS. 2 and 3 the same parts as those in FIGS. 38 and 39 are denoted by the same reference numerals, and detailed description thereof will be omitted.
- FIG. 4 is a block diagram showing an internal configuration of an ID management remote controller.
- the ID management system shown in FIG. 1 comprises an AV data transmitting device 3 connected to the AV source device 1 by wire, an AV data receiving device 4a connected to the AV reproducing device 2 by wire, and an AV data It comprises a receiving device 4b and an ID management remote controller (remote controller) 5 for performing infrared communication with the AV data transmitting device 3 and the AV data receiving devices 4a and 4b.
- the AV data transmitting device 3 has an ID code A as an ID code for transmitting AV data
- the AV data receiving devices 4a and 4b have ID codes A and B as ID codes for receiving AV data, respectively.
- FIG. 1 comprises an AV data transmitting device 3 connected to the AV source device 1 by wire, an AV data receiving device 4a connected to the AV reproducing device 2 by wire, and an AV data It comprises a receiving device 4b and an ID management remote controller (remote controller) 5 for performing infrared communication with the AV data transmitting device 3 and the AV data receiving devices 4
- the AV data transmitting apparatus 3 includes an ID management unit that reads an ID code recorded in the ID storage unit 520 in the AV data transmitting apparatus shown in FIG.
- the AV data receiving apparatuses 4a and 4b according to the present embodiment store the ID codes recorded in the ID storage unit 560 in the AV data receiving apparatus shown in FIG.
- the AV data receiving device 4b in FIG. 1 has an AV data reproducing function in place of the analog output section 548 and the digital output section 550 because it has the function of an AV reproducing apparatus. .
- the ID management remote controller 5 includes an ID storage unit 570 for storing the received ID code, an internally recorded ID code, and an ID code received from the outside.
- the ID management control section 571 for comparing the ID code with the ID management input section 572 for sending the received ID code to the ID management control section 571, and a signal for requesting the transmission of the ID code.
- An ID management output unit 575 for sending out, an operation unit 574 for inputting an operation, and a result display unit 575 for displaying a comparison result of the ID code are provided.
- the ID management remote controller 5 used in the AV data wireless communication system includes, as an operation unit 574, a Get key 701 for instructing recording of a received ID code, A Chk key 720 for instructing a comparison between the received ID code and the recorded ID code is provided.
- the display of the result display section 575 is set to “Empty”, and it is shown that the ID code is not stored in the ID storage section 570.
- the Get key 7001 of the remote control for ID management 5 is operated in an area where communication with the AV data transmitting device 3 is possible, the ID code of the AV data transmitting device 3 is received so as to receive the ID code.
- An ID request signal for requesting a code transmission is generated by the ID management control section 571, and transmitted to the AV data transmitting apparatus 3 from the ID management output section 573 (STEP 1).
- the AV data When the ID request signal is transmitted from the ID management remote controller 5, the AV data
- the transmitter 3 receives the ID request signal at the ID management input unit 5 2 2, and confirms that the ID management remote controller 5 has requested transmission of the ID code at the ID management control unit 5 2 1 (STEP 2). Then, after reading the transmission ID code stored in the ID storage section 520 by the ID management control section 521 (STEP 3), the ID code is transmitted from the ID management output section 523 (STEP 4).
- the ID code transmitted from the AV data transmission device 3 is received by the ID management input section 572 of the ID management remote control 5, the ID code from the AV data transmission device 3 is received.
- the management controller 571 confirms (STEP 5), and the ID code is written to the ID storage 570 (STEP 6).
- the result display section 5 7 5 is displayed as "ID
- the Chk key 702 of the ID management remote controller 5 When the Chk key 702 of the ID management remote controller 5 is operated, the same operation as in STEP 1 is performed and an ID request signal is transmitted to the AV data receiving device 4 (STEP 7). Then, similarly to the operation of the AV data transmission device 3 in STEP 2 to STEP 4, when the AV data reception device 4 receives the ID request signal at the ID management input unit 562 and confirms it at the ID management control unit 561. (STEP 8), the ID code is read from the ID storage section 560 (STEP 9), and the ID code is transmitted from the ID management output section 563 (STEP 10).
- the ID code transmitted from the AV data receiving device 4 is received by the ID management input section 572 of the ID management remote controller 5, the ID code from the AV data receiving device 4 is received.
- the management control unit 571 confirms (STEP 11). Then, after reading the ID code of the AV data transmission device 3 stored in the ID storage portion 570 in the ID management control portion 571, the ID code of the AV data transmission device 3 and the ID code of the AV data reception device 4 are read. Compare with ID code (STEP 1 2).
- the result of the comparison is displayed from the ID management control unit 571.
- the comparison result is displayed on the result display section 575 after being notified to the section 575 (STEP 13).
- the ID code of the AV data transmission device 3 stored in the ID storage unit 570 is deleted by the ID management control unit 571 (STEP 14).
- the ID management remote controller 5 checks whether or not the ID codes of the selected AV data transmitter 3 and AV data receiver 4 match, and the selected AV data transmitter 3 and AV It can be checked whether or not the data receiving device 4 is constructing an AV data wireless communication system.
- the ID management remote control 5 records the ID code of the AV data transmission device 3 and then compares the ID code with the ID code of the AV data reception device 4. It can also be confirmed by recording the ID code of the data receiving device 4 and comparing it with the ID code of the AV data transmitting device 3. The operation at this time is the same as the operation described above.
- the operation unit 574 is constituted by two keys including the Get key 701 and the Chk key 702, it may be constituted by one key.
- the key is operated for the first time in an empty state where no ID code is recorded in the ID storage section 570
- the received ID code is stored in the ID storage section 570 (STEP 1, STEP 5, STEP 6).
- the key is operated again, the received ID code is compared with the ID code stored in the ID storage unit 570, and the comparison result is displayed on the result display unit 575, and the ID storage unit 570 is displayed.
- Delete the ID code in 0 to make it empty (STEP 7, STEP 11 to STEP 14).
- FIG. 7 is an external view showing a configuration of the ID management remote controller 5 in the present embodiment.
- the same parts as those in FIG. 6 are denoted by the same reference numerals, and detailed description thereof will be omitted.
- FIG. 8 is a flowchart for explaining the ID code storage operation of the ID management remote controller 5.
- this ID management remote controller 5 is stored in an ID storage unit 570 as an operation unit 574, in addition to the Get key 701 and the Chk key 702. A C 1 r key 703 for instructing the erasure of the ID code is provided.
- Other configurations of the ID management remote controller 5 are the same as those of the first embodiment.
- the ID management remote controller 5 after storing the ID code in the ID storage unit 570 will be described with reference to the flowchart of FIG.
- the ID code is stored (STEP 6).
- the ID management control unit 571 resets the number k indicating the number of times the ID code has been matched to 0 (STEP 51), and then stores the ID code.
- the timer for measuring the later time is reset, and the measurement time t is set to 0 (STEP 52).
- the timer is provided in the ID management control section 571.
- the ID management control unit 571 first, it is confirmed whether or not the measurement time t measured by the timer has exceeded the predetermined time T (STEP 53), and if the measurement time t has not exceeded the predetermined time T (N o) It is confirmed whether or not the operation section 574 has been operated (STEP 54). At this time, if the operation unit 574 is operated (Yes;), the ID management control unit 571 confirms whether or not the Chk key 702 is operated (STEP 55). Then, when the Chk key 720 is operated (Y es), the first execution is performed.
- the ID code of the AV data receiving device 4 is received, and the ID of the AV data transmitting device 3 stored in the ID storage section 570 is transmitted. Compare with code (STEP 7, STEP 1 1, STEP 1 2
- the ID management control section 571 counts the number k of ID code matches by one.
- this number k exceeds a predetermined number K (STEP 58). That is, the predetermined number of times indicates the number of AV data receiving devices 4 that have been permitted to communicate with the AV data transmitting device 3, and that the AV data receiving device 4 permits up to K devices to communicate with one AV data transmitting device. Is done.
- the Clr key 703 is provided, but after storing the ID code, The deletion of the ID code may be confirmed by operating the t key 701. In STEP 55 in FIG. 8, an error may be displayed on the result display section 575 when the Get key 701 is operated.
- FIG. 9 is a block diagram showing the internal configuration of the remote controller 5a for ID management according to the present embodiment.
- the same parts as those in FIG. 4 are denoted by the same reference numerals, and detailed description thereof will be omitted. I do.
- the ID management remote controller 5a in FIG. 9 is different from the ID storage controller 570 in the ID management remote controller 5 in FIG. 5 in that a transmission ID storage unit 570a and a reception ID storage unit 570 are used. b. That is, the ID management remote controller 5 a can store the transmission ID code of the AV data transmission device 3 and the reception ID code of the AV data reception device 4. Further, in the ID management remote controller 5 a, as the operation unit 5 7 4, as in the first 1 2 A diagram, G 6 1 for acquiring transmission ID code; and Ding key 7 0 1 3, for receiving It has a Get RX key 701b for acquiring an ID code and a Clik key 702.
- the transmission ID code of the AV data transmission device 3 is received by the ID management input section 572 (STEP 5a)
- the received transmission ID code is transmitted by the ID management control section 571 to the transmission ID storage section 571.
- k1 representing the number of times of matching with the transmission ID code is initialized to 0 (STEP 51a), and after storing in the transmission ID storage unit 570a, The timer for measuring the time t1 is reset (STEP 52a).
- the Get RX key 701 b of the operation unit 574 is operated to operate the AV. It is confirmed whether or not acquisition of the reception ID code of the data receiving device 4 has been instructed (STEP 50b).
- the Get RX key 701b is operated (Yes)
- an RX ID request signal for requesting transmission of an ID code for reception of the AV data receiver 4 is transmitted (STEP1b).
- the receiving ID code of the AV data receiving device 4 is received (STEP 5b), it is stored in the receiving ID storage unit 570b (STEP 6b).
- k 2 representing the number of times of matching with the reception ID code is initialized as 0 (STEP 5 1 b), and a timer for measuring the time t 2 after storing in the reception ID storage section 5 70 b is set. Is reset (STEP 52b).
- the transmission ID storage unit 570 a and the reception ID storage unit 5 7 It is confirmed whether the ID code is stored in any of 0b (STEP 101). At this time, if the transmission ID code and the reception ID code are stored in the transmission ID storage unit 570a and the reception ID storage unit 570b, respectively (Y es), the transmission ID Whether the code and the reception ID code match is confirmed by the ID management control unit 571 (STEP 102).
- the transmission ID code stored in the transmission ID storage unit 570 a and the reception ID storage unit 570 b are stored. Since the ID code and the reception ID code are ID codes in the same AV data wireless communication system, the number of matches kl, 3 ⁇ 4: 2 with the transmission ID code and the reception ID code is counted by one (STEP 103). The value kmax, which is the larger of the counts k 1 and k 2 thus calculated, is selected, and the value of the counts k 1 and k 2 is changed to the same value as the selected count km ax (STEP 5 1c ).
- the Chk key 702 of the operation section 574 is operated to operate the AV data transmission device. 3 or confirm whether an instruction to confirm the ID code of the AV data receiving apparatus 4 has been issued (STEP 55).
- the Chk key 720 is operated (Yes), as in the second embodiment, the ID code is transmitted to the AV data transmitting device 3 or the AV data receiving device 4, which is the ID code confirmation target.
- the comparison result is displayed in 5 7 5 (STEP 13).
- the transmission ID storage unit 570a matches only the transmission ID code in the 570a
- the reception ID storage unit 570b matches only the reception ID code in the 570b
- Get TX key 701a has been operated to delete the transmission ID code in the ID storage section 570a (STEP 104a). Further, at this time, if the operation of the 06 1; down key 7 0 1 & is not confirmed (No), Get RX to delete the reception ID code in the reception ID storage section 570 b is performed. It is confirmed whether or not the key 701b has been operated (STEP 104b).
- the transmission ID code is stored. It is confirmed whether or not the measurement time t1 after the execution is equal to or longer than the predetermined time T (STEP 53a). If the measurement time t1 does not exceed the predetermined time T (No), it is confirmed whether the measurement time t2 after the reception ID code is stored is equal to or longer than the predetermined time T (STEP 5 3 b).
- the transmission stored in the reception ID storage unit 570 b is performed. Delete the trust ID code (STEP 14b).
- the transmission ID storage unit 570a and the reception ID storage unit 570b are deleted. It is checked whether both are empty (STEP 105). That is, it is confirmed whether both the transmission ID code and the reception ID code have been erased. At this time, if the ID code is stored in one of the transmission ID storage unit 570a and the reception ID storage unit 570b (No), the process proceeds to STEP 50a, Repeat the operation after 50a. If the ID code has been deleted from both the transmission ID storage section 570a and the reception ID storage section 570b (Yes), the operation is terminated. If the transmission ID code and the reception ID code match in Step 105 (Yes), the IDs are transmitted from both the transmission ID storage section 570a and the reception ID storage section 570b. Delete the code (STEP 14c) and end the operation.
- the display states of the result display section 575 in each operation state are as shown in FIGS. 12B to 12I. That is, first, when neither the transmission ID code nor the reception ID code is stored, as shown in FIG. 12A, the result display section 575 displays "TX: Empty". RX: Em pty ". Note that TX indicates the recording state of the transmission ID code, and RX indicates the recording state of the reception ID code.
- the result display section 575 Is displayed as "TX: IDG et RX: Em pty".
- the Get RX key 701b is operated and the reception ID code is stored in the reception ID storage unit 570b, as shown in Fig. 12C, the result display unit 575 The display reads "TX: Empty RX: IDG et".
- the ID code is transmitted.
- A is stored in the transmission ID storage unit 570a and displayed as shown in FIG. 12B.
- the ID code A is stored in the receiving ID storage unit 570b, and the ID code A shown in FIG. Is displayed as follows.
- the ID code B is stored in the receiving ID storage unit 570 b, as shown in FIG. 12C. Will be displayed.
- the reception RX code is obtained by operating the Get RX key 700b in the state shown in Fig. 12B, or displayed in Fig. 12C
- the transmission ID code is obtained by operating the 0 6 1: ⁇ ⁇ key 7 0 1 &
- the transmission ID storage 5 7 0 a and the reception ID storage 5 7 0 Since the transmission ID code and the reception ID code are stored in each of b, the result display section 575 displays "TX: IDG et RX: IDG et ".
- the display of the result display section 575 becomes "TX: Same ID RX: Same ID".
- the Get RX in the communication range of the AV data receiving device 4b is obtained.
- the ID code B is stored in the reception ID storage section 570b, and displayed as shown in FIG. 12D.
- Chk key 720 is operated, and either AV data transmitting device 3 or AV data receiving device 4 is operated. If the ID code received from the sender matches the transmission ID code stored in the transmission ID storage unit 570a, it is determined that the ID code matches the transmission ID code as shown in Fig. 12F. Therefore, the display of the result display section 575 becomes “Same TX”. Also, in the state shown in FIGS. 12C and 12D, the Chk key 702 is operated to receive data from either the AV data transmitting device 3 or the AV data receiving device 4. If the received ID code matches the reception ID code stored in the reception ID storage section 570b, the result is displayed to indicate that it matches the reception ID code as shown in Fig. 12G. The display of Part 5 7 5 is changed to "Same RX".
- the Chk key 702 is operated, and the ID code received from either the AV data transmitter 3 or the AV data receiver 4 is used for transmission. If the ID code stored in the ID storage section 570a and the reception ID storage section 570b match, the ID code for transmission and the ID code for reception match as shown in Fig. 12H. Display in the result display section 575 is "Same TX & RX, '.
- the Chk key 702 is operated, and the AV data transmitting device 3 or the AV data receiving device 4 is operated. If the received ID code does not match either the transmission ID code stored in the transmission ID storage section 570a or the reception ID code stored in the reception ID storage section 570b, the first I 2 As shown in the figure, the result display section 575 displays "D iffer" to indicate that it does not match any ID code.
- the ID code A when the ID code A is stored in the transmission ID storage unit 570a, the Chkk in the communication range of the AV data receiving device 4a
- the ID code A is received and matches the transmission ID code A in the transmission ID storage section 570a, so that it is displayed as shown in FIG. 12F.
- the ID code A is stored in the receiving ID storage unit 570b, when the Chk key 720 is operated in the communication range of the AV data transmitting device 3 or the AV data receiving device 4a. Since the ID code A is received and coincides with the reception ID code A in the reception ID storage section 570b, it is displayed as shown in FIG. 12G.
- the ID code A is stored in the transmission ID storage section 570a and the reception ID storage section 570b, and the Chk key 720 is operated within the communication range of the AV data receiving apparatus 4a.
- the ID code A is received, both the transmission ID code A in the transmission ID storage unit 570a and the reception ID code A in the reception ID storage unit 570b are received. Since they match with each other, they are displayed as shown in Fig. 12H.
- ID code A is the ID memory for transmission 5
- the Chk key 70 2 When the Chk key 70 2 is operated in the communication range of the AV data receiving device 4 b, the ID code B is received and transmitted for storage in the 7 0 a and the receiving ID storage section 5 7 0 b.
- both the transmission ID code A in the ID storage unit 570a and the reception ID code A in the reception ID storage unit 570b do not match, they are displayed as shown in Fig. 12I.
- the same ID code is used for an AV data wireless communication system in which one AV data transmitting device 3 permits communication with a plurality of AV data receiving devices 4. Can be confirmed.
- different ID codes for transmission and ID codes for reception are stored, it is possible to confirm the device in the AV data radio communication system using each ID code.
- the ID management remote controller 5a as shown in the flowcharts of FIG. 10 and FIG. 11, the stored ID code is allowed to be operated for a certain period of time or by user operation or communication. Erasing can be performed based on the upper limit of the number of units, and its safety can be guaranteed.
- FIG. 13 is a block diagram showing the internal configuration of the remote controller 5b for ID management according to the present embodiment.
- the same parts as those in FIG. 4 are denoted by the same reference numerals, and detailed description thereof will be omitted. Omitted.
- the ID management remote control 5b in FIG. 13 has four ID storage units 570p to 570s instead of the ID storage unit 570 in the ID management remote control 5 in FIG.
- a configuration is provided in which a communication relationship storage memory 576 indicating the relationship between the ID codes stored in the ID storage units 570p to 570s is added. That is, the remote controller for ID management 5 b is an ID code provided in the AV data transmitting device 3 and the AV data receiving device 4. You can store multiple passwords.
- the ID management remote controller 5b is provided with a Get key for acquiring an ID code from the AV data transmitting device 3 and the AV data receiving device 4 as the operation unit 574.
- Chk key 702a for comparing the ID codes stored in the ID storage units 570p to 701s with the 701p to 701s and the ID storage unit 570
- Chk key 720b for comparing with the ID code stored in p ⁇ 570s
- C for deleting the ID code stored in ID storage unit 570p ⁇ 570s 1 r key 703 and a key portion 704 for controlling the operation of the AV source device 1 having the same function as the remote controller 11 in FIG. 37.
- FIG. 15 is a block diagram showing a relationship between an AV data transmitting apparatus and an AV data receiving apparatus constituting a plurality of AV data wireless communication systems.
- an AV data wireless communication system is constituted by an AV data transmitting device 3a having an ID code A for transmission and an AV data receiving device 4a having an ID code A for receiving.
- the AV data transmitter 3 having the transmission ID code B and the AV data receiver 4 b having the reception ID code B constitute an AV data wireless communication system.
- AV data receiving devices 4 c and 4 d having receiving ID codes C and D are also arranged.
- the ID management remote controller 5 is set in the communicable area of the AV data transmitter 3a.
- the Get key 701p of b is operated, an ID request signal is transmitted from the ID management output unit 573 to the AV data transmitting device 3a. Therefore, the transmission ID code A is transmitted from the AV data transmission device 3a, and the ID code A is received by the ID management input section 572.
- the ID management control unit 571 is set so that the ID code A is stored in the ID storage unit 570p set to be stored when the Get key 701p is operated. Perform write control.
- the Get key 7101q of the ID management remote control 5b is pressed, and the G key of the ID management remote control 5b is set in the communicable area of the AV data receiving apparatus 4b.
- et key 7 0 1 r in the communicable area of the AV data receiving device 4 c The Get key 7001s of the ID remote control 5b is operated, respectively, and the ID code A of the AV and data receiving device 4a and the ID code B and the AV data of the AV data receiving device 4b are received.
- the ID code C of the device 4c is received.
- the ID code A is stored in the ID storage unit 570 q
- the ID code B is stored in the ID storage unit 570 r
- the ID code C is stored in the ID storage unit 570 s.
- the ID management control section 571 performs write control.
- ID1 to ID4 displayed in the result display section 575 represent ID codes stored in the ID storage sections 570p to 570s, respectively.
- the AV data transmission is performed.
- the ID management control unit 571 notifies the result display unit 575 that the ID code A has been acquired from the device 3a and stored in the ID storage unit 570p, as shown in Fig. 16A Display "Get ID 1".
- the result display unit is also provided to indicate that the ID codes are stored in the ID storage units 570q to 570s.
- 5 7 5 displays "Get ID 2", “Get ID 3", and "Get ID 4".
- the ID management control is performed.
- the ID code stored in each of the ID storage units 570p to 570s is read out by the unit 571 and compared. Therefore, the ID codes A, A, B, and C are compared in the ID management control unit 571, and the ID codes stored in the ID storage units 570 Op and 570q are the same as the ID code A. It is confirmed that there is. Therefore, the ID storage unit 5 7
- the comparison result indicating that the ID codes stored in 0p and 570q match is given to the communication relationship storage memory 576. Therefore, in the communication-related storage memory 576, the ID storage section 570! ) To 570 s that have the same ID code are recorded as a group.
- the ID management control section 571 notifies the result display section 575 that the ID code stored in the ID storage section 570p, 570q as the ID code A matches, and displays the result.
- the Chk key 720b When the Chk key 720b is operated in a communicable area such as the AV data transmitting device 3b or the AV data receiving device 4d, an ID request is issued to the AV data transmitting device 3b or the AV data receiving device 4d.
- the signal is transmitted from the ID output section 573.
- the ID management control section 571 As a result, the ID codes A and A to C stored in the ID storage units 570 p to 570 s are read.
- the received ID code B or ID code D is compared with each of the ID codes A and A to C stored in the ID storage sections 570 p to 570 s, and whether or not there is a matching ID code. Is confirmed, and this comparison result is notified to the result display section 575 and displayed.
- the ID code B of the AV data transmission device 3b is received
- the ID code B of the AV data reception device 4b stored in the ID storage unit 570r is checked to confirm that it matches the ID code B.
- the ID code D of the AV data receiving device 4d When the ID code D of the AV data receiving device 4d is received, the ID code does not match any of the ID codes stored in any of the ID storage units 570p to 570s, and there is no matching ID code. As shown in FIG. 16D, "D iffer" is displayed in the result display section 575 as shown in FIG. 16D.
- the ID codes A and A to C stored in the ID storage units 570p to 570s are deleted by the ID management control unit 571, respectively.
- the ID storage units 570 p to 570 s are made empty.
- the result display unit 575 may display that the ID code stored in the ID storage units 570p to 570s has been deleted.
- the status of each of the ID storage units 570 p to 570 s may be always displayed on the result display unit 575.
- four ID storage units 570 p to 570 s are used.
- the number is not limited to four, and two or more ID storage units may be used.
- one ID storage unit is divided into a plurality of storage areas, and each storage area is operated and managed as in the ID storage units 570p to 570s of the present embodiment. You may do it.
- the ID code stored in the ID storage unit is deleted after a predetermined time has elapsed since the ID code was stored in the ID storage unit.
- the ID code stored in the ID storage unit may be deleted when the number of matches exceeds a predetermined number.
- FIG. 17 is a block diagram showing the internal configuration of the remote controller 5c for ID management according to the present embodiment. The same parts as those in FIG. Description is omitted.
- the ID management remote control 5c shown in FIG. 17 is an ID storage memory 570x which is an alternative to the ID storage section 570p to 570s in the ID management remote control 5b shown in FIG. Is provided.
- the ID storage memory 570x is provided with an area for each stored ID code, and in the area where each ID code is recorded, the code name and the ID code of the ID code are stored. The type of code, the installation location of the device with the ID code, and the type of device are recorded.
- the remote control for ID management 5 c is used as an operation unit 5 7 4 as shown in FIG. et key 701, Chk key 702x for comparing ID code stored in ID storage memory 570x, and ID code stored in ID storage memory 570x And a registration key 705 for registering the installation location and the type of the device having the ID code stored in the ID storage memory 570x. Is provided.
- the ID management remote controller 5c When the ID management remote controller 5c is configured as described above, as shown in FIG. 19, the AV data transmitting devices 3a to 3c and the AV data receiving devices 4a to 4c, 4x, and 4y are installed. Shall be That is, the AV data transmitting devices 3 a and 3 b and the AV data receiving device 4 c are provided in the room r 1. 2: AV data receiving devices 4a and 4b are installed in 2, and AV data transmitting device 3c and AV data receiving devices 4X and 4y are installed in room r3.
- the AV data transmitting device 3a and the AV data receiving devices 4a and 4x transmit the ID code A
- the AV data transmitting device 3b and the AV data receiving device 4b transmit the ID code B
- c and AV data receiving devices 4 c and 4 y each have an ID code C.
- the IDs are set in the communicable area of the AV data transmitting device 3a in the room r1.
- the Get key 7 0 1 of the remote controller 5 c is operated, an ID request signal is transmitted to the AV data transmitter 3 a, and the transmission ID code A of the AV data transmitter 3 a is received.
- the registration key 705 is operated, and the AV data transmission device 3a is installed in the room r1 while the AV data transmission device 3a is in STB (Set Top Box) is entered. Therefore, as shown in FIG.
- the Get key 7001 of the ID management remote controller 5c is operated to acquire the ID code of each device.
- the registration key 705 is operated to input the installation location and the type of the device.
- the ID codes of the AV data transmitting devices 3a to 3c and the AV data receiving devices 4a to 4c, 4, and 4y are stored in the ID storage memory 570X.
- the Chk key 702X is operated, the ID code stored in the ID storage memory 570X is read out by the ID management control unit 571, and each ID code is compared. . Then, group by the matching ID code.
- the address positions of the ID codes that compose the group are recorded in the communication-related memory 576 for each group. A display indicating each group is displayed on the display section 575.
- the address a1 is defined as the group g1. , A4, and a7 are combined and stored in the communication-related storage memory 576. Also, the group g that communicates by ID code B
- the addresses a 2 and a 5 are combined and stored in the communication-related storage memory 576. Also, as a group g3 in which communication is performed by the ID code C, the addresses a3, a6, and a8 are combined and stored in the communication-related storage memory 576.
- the ID management control unit 571 refers to the communication-related storage memory 576 so that, for example, the ID code of each device constituting the AV data communication system constituting the group g1 is stored in the ID storage memory. Recognize that it is stored in each storage area by the address a1, a4, and a7 of 570X. In the AV data communication system constituting the group g1, the data recorded in the storage areas of the addresses a1, a4, and a7 of the ID storage memory 570X are read, so that the room rl is read. The ID management controller 571 confirms that the STB 3a is on the transmitting side, and that the TV 4a in room r2 and the projector 4X in room r3 are on the receiving side.
- a constituting the AV data radio communication system of groups g 2 and g 3 The ID management control unit 571 confirms the address position where the ID code of the device constituting each group is stored by the communication relationship storage memory 576 for the devices that are the transmitting side and the receiving side of the V data communication system. Thereafter, the data at the address position is read from the ID storage memory 570X to confirm. As described above, when the devices constituting the AV data wireless communication systems of the groups gl to g3 are confirmed, the result display unit 575 is notified.
- the installation location and type of the transmitting side device and the receiving side are shown.
- the installation location and type of the device are displayed. That is, in the result display section 575, for the group g1, the "transmitting side: r1-STB receiving side: r2-TV, r3—projector", and for the group g2, the "transmitting side: r 1-ch Euna Reception side: r2—monitor ”and group g3 are displayed for each group, such as“ transmission side: r3—VTR reception side: r1 one TV, r3—TV ”. Is done. If the devices installed in the same room are of the same type, a number for discriminating each device may be assigned. Further, the type of the device may be determined by the product name.
- the Chk key 720 X is operated to confirm the group constituting each AV data wireless communication system, another AV data transmitting device 3 or AV data receiving device 4 can communicate.
- the Get key 701 is operated in the area, the ID code is stored in the ID storage memory 570X, and the received ID code and the ID code of each group are stored in the ID management control unit 571. Be compared. Then, a group having the same ID code as the acquired ID code is confirmed, and the address position of the storage area where the received ID code is stored in the ID storage memory 570X is assigned to the same ID code group. These are combined and stored in the communication related memory 576. Also, in the result display section 575, a display for notifying the same ID code group as the received ID code is made.
- a projector 4z which is an AV data receiving apparatus provided with the reception ID code B, is installed in the room r4, and the Get key 7c of the ID remote control 5c is located in the communicable area of the projector 4z. 0 When 1 is operated, projector 4 The ID code B of z is received and stored in the ID storage memory 570x at address a9. Since the ID code B is an ID code used in the AV data wireless communication system forming the group g2, the ID management control unit 571 confirms that the projector 4z belongs to the group g2. The address a9 is combined with the addresses a2 and a5 and stored as a group g2 in the communication-related storage memory 576.
- the location of the device is room r4 and the type of device is a projector is recorded in the storage area of address a9.
- the C1k key 703 By operating the C1k key 703, the data stored in the ID storage memory 570x is deleted.
- a display example as shown in FIG. 21 is given as a display example in the result display section 575 for representing the AV data wireless communication system which is included in each group. It is not limited to. For example, as shown in Fig. 23,
- an arrow indicating the transmitting and receiving relationship of the AV data is shown with the installation location and type of each device. It may be displayed.
- FIGS. 24A and 24B the AV data transmitting device 3 and the AV data receiving device 4 stored in the ID memory Alternatively, the transmission / reception relationship of the AV data may be displayed on the result display section 575 using this code.
- FIG. 24A is a display example in which each group is displayed
- FIG. 24B is a display example in which transmission / reception relationships of AV data are represented by arrows.
- A represents “r 1 -STB”
- B represents “r 1 -channel”
- C represents “r 3 -VTR”
- a represents “r 3 -VTR”.
- FIG. 25 is a block diagram showing an internal configuration of the AV data transmitting apparatus according to the present embodiment.
- FIG. 26 is a block diagram showing the internal configuration of the AV data receiving apparatus according to the present embodiment.
- the same parts as those in FIGS. 2 and 3 are denoted by the same reference numerals, and detailed description thereof will be omitted.
- the AV data transmission device 3p in FIG. 25 is provided with an ID management remote controller 5, 5a to 5c (ID) that operates as in the first to fifth embodiments. 4, 9, 13, and 17) are provided with a result display section 580 for displaying the comparison results transmitted from FIG.
- the AV data receiving device 4p in FIG. 26 is provided on the AV data receiving device 4 in FIG. 3 with a result display section for displaying the comparison results transmitted from the ID management remote controllers 5, 5a to 5c. 5 8 1 is added.
- the AV data transmitting device 3p and the AV data receiving device 4p are configured as described above, and the ID code stored in the ID management remote controllers 5, 5a to 5c and the received ID code are compared.
- the communication connection relationship of the device is transmitted. That is, for example, in the case of the remote controller 5 for ID management, when the Get key 701 is operated after the ID code is stored in the ID storage unit 57 °, the received ID code and the received ID code are stored in the ID storage unit 570.
- the ID codes thus obtained are compared, and the obtained comparison result is transmitted from the ID management output section 573.
- the AV data transmitting device 3 p (AV data receiving device 4 p) communicating with the ID management remote controller 5 receives the data at the ID management input section 52 2 (56 2).
- “Same” or “Differ” is displayed on the result display section 580 (581) based on the received comparison result.
- the numbers in parentheses indicate the parts that operate when the AV data receiving device 4p and the ID remote controller 5 are communicating.
- the operation of the STE P 1 to S TE P 6 is performed by the AV data transmitting device 3 p and the ID management remote controller 5.
- the ID code of the AV data transmitting device 3p is stored in the ID storage unit 570 of the ID management remote control 5 by performing the above steps.
- the operations of STEP 7 to STEP 12 are performed between the AV data receiving device 4 p and the ID
- the ID code of the V data receiving device 4p is compared with the ID code of the AV data transmitting device 3p stored in the ID storage section 570 of the ID management remote controller 5.
- the comparison result in the ID management control section 571 is transmitted from the ID management output section 573 to the AV data receiving device 4p (STEP 201), and the ID storage section 570 ID code is erased (STEP 14).
- the comparison result is received from the ID management remote controller 5 by the ID management input section 562 (STEP 202)
- the comparison result is confirmed by the ID management control section 561 and given to the result display section 581.
- the result of comparison by the ID management remote controller 5 is displayed on the result display section 581 of the AV data receiving device 4p (STEP 203).
- the comparison result is transmitted in the same manner, so that the AV data transmitting device 3p or The AV data receiving device 4 p is connected to the result display section 580 or the result display section 581, and the result display sections 5 7 5 of the ID management remote controllers 5, 5a to 5c in the second to fifth embodiments.
- the communication connection relation of each device can be displayed.
- the AV data receiving device 4p receives the comparison result received from the ID management remote controllers 5, 5a to 5c from the ID management control unit 561.
- D./A 547 and analog output unit 548 or digital output unit 550 may be used to output to AV playback device 2.
- the AV player 2 can display the communication connection relationship of each device obtained from the comparison result by the ID management remote controllers 5, 5a to 5c.
- FIG. 29 is a block diagram showing an internal configuration of the AV data transmitting apparatus according to the present embodiment.
- FIG. 30 is a block diagram showing the internal configuration of the AV data receiving apparatus according to the present embodiment.
- FIG. 31 is a block diagram showing the internal configuration of the remote controller for ID management according to the present embodiment. 29 to 31, the same parts as those in FIGS. 2 to 4 are denoted by the same reference numerals, and detailed description thereof will be omitted.
- the AV data transmission device 3q in FIG. 29 is configured by adding an encryption unit 590 for encrypting the ID code in the ID storage unit 520 to the AV data transmission device 3 in FIG. It becomes.
- the AV data receiving device 4 q in FIG. 30 includes an encryption unit 591 for encrypting the ID code in the ID storage unit 560 in the AV data receiving device 4 in FIG.
- the configuration is added.
- the ID management remote controller 5q in FIG. 31 is configured by adding an decryption unit 592 to decrypt the received ID code to the ID management remote controller 5 in FIG. It becomes.
- the AV data transmitting device 3 q and the AV data receiving device 4 q and the ID management remote controller 5 q are configured, unlike the first embodiment, the AV data transmitting device 3 q and the AV data receiving device
- the encrypted ID code is transmitted from 4q, and the ID code received by the ID management remote controller 5q is decrypted.
- Other operations are the same as in the first embodiment.
- the AV data transmitter 3 q (AV data receiver 4 q) receives the ID request signal from the ID management remote controller 5 q at the ID management input section 5 2 2 (5 6 2),
- the ID code read from the ID storage unit 520 (560) by the management control unit 52 1 (56 1) is sent to the encryption unit 590 (59 1) and encrypted.
- the encrypted ID code is transmitted from the ID management output section 52 3 (56 3) to the ID management remote control 5 q.
- the ID management remote control 5 q When receiving the encrypted ID code from the AV data transmitting device 3 q (AV data receiving device 4 q), the ID management remote control 5 q receives the encrypted ID code while encrypting the received ID code. It is stored in the ID storage unit 570 by the control unit 571. The ID management remote controller 5q storing the ID code encrypted in this way in the ID storage unit 570 is used to store the encrypted ID code from the AV data receiver 4q (AV data transmitter 3q). When the ID code is received, the ID code stored in the ID storage unit 570 and the received ID code are sent from the ID management control unit 571 to the decryption unit 592.
- the two ID codes are decrypted by the decryption unit 592, compared by the ID management control unit 571, and the comparison result is given to the result display unit 575 for display.
- the encrypted ID code in the ID storage unit 570 is deleted. That is, as in the state transition diagram of FIG. 32, similarly to the state transition diagram of FIG. 5, first, the operations of STE P1 to STE P 3 are performed by the AV data transmitting device 3q and the ID management remote controller 5. is performed between q, the AV data transmitting apparatus 3q that has received the ID request signal The D code is read from the ID storage unit 520. Then, the ID code read from the ID storage unit 520 is encrypted by the encryption unit 590 (STEP 301).
- the operation of STEP 7 to STEP 9 is performed between the AV data receiving device 4q and the ID management remote controller 5q, so that the AV data receiving device 4q that has received the ID request signal
- the ID code is read from the ID storage unit 560.
- the ID code read from the ID storage section 560 is encrypted by the encryption section 591 (STEP 302).
- the operations of STEP 10 and STEP 11 are performed between the AV data receiving device 4q and the ID management remote controller 5q, so that the encrypted ID transmitted from the AV data receiving device 4q is transmitted.
- the code is received by the remote control for ID management 5 q.
- the ID code stored in the ID storage unit 570 in the STEP 6 and the ID code received in the STEP 11 are given to the decryption unit 592, respectively, and the two ID codes are given.
- Is decrypted (STEP 303).
- the two decrypted ID codes are compared in the ID management control section 571, the comparison result is given to the result display section 575 and displayed, and the ID in the ID storage section 570 is displayed.
- the code is erased (STEP12 to STEP14).
- the encryption keys used by the AV data transmitting device 3 q and the AV data receiving device 4 q for encryption by the encryption units 590 and 5991 are as follows:
- the ID may be stored in advance, or may be transmitted together with the ID request signal from the ID management remote controller 5q.
- the encryption key may be transmitted to the ID management remote controller 5q together with the encrypted ID code.
- the encryption key may be changed every time encryption is performed. At this time, the encryption key may be changed based on time. Further, the ID management remote controller 5q may compare the encrypted ID codes with each other.
- ID code encryption is applied to the first embodiment.
- the ID management remote controllers 5, 5a to 5c according to the second to fifth embodiments are also configured to include the decryption unit 592, so that the AV data transmission device 3q and AV data receiving device 4
- the encrypted ID code transmitted from 4q can be decrypted to confirm the communication connection relationship of each device.
- the remote control for ID management 5, 5a to 5c performs the same operation as the second to fifth embodiments except for the operation of decrypting the received ID code.
- the AV data transmitting device 3 q and the AV data receiving device 4 q have a configuration in which a result display section is added to the AV data transmitting device 3 q and the AV data receiving device 4 q.
- a comparison result indicating the communication connection relationship of each device may be transmitted.
- the stored ID code may be deleted at a predetermined time after the ID code is stored, or the number of devices having the same ID code may be equal to the predetermined number. It does not matter if it is changed, or it may be instructed by the operation unit 574.
- FIG. 33 is a block diagram showing an internal configuration of the AV data transmitting apparatus according to the present embodiment.
- FIG. 34 is a block diagram showing the internal configuration of the AV data receiving apparatus according to the present embodiment.
- FIG. 35 is a block diagram showing the internal configuration of the remote controller for ID management according to the present embodiment. 33 to 35, the same parts as those in FIGS. 29 to 31 are denoted by the same reference numerals, and detailed description thereof will be omitted.
- the AV data transmission device 3r in FIG. 33 has a configuration in which an decryption unit 595 and a result display unit 580 are added to the AV data transmission device 3 in FIG.
- the AV data receiving device 4r in FIG. 34 has a configuration in which an decryption unit 596 and a result display unit 581 are added to the AV data receiving device 4q in FIG.
- the ID management remote controller 5r in FIG. 35 has a configuration in which an encryption unit 597 is added to the ID management remote controller 5q in FIG.
- the result display sections 580 and 581 operate in the same manner as the result display sections 580 and 581 of the AV data transmitting device 3 p and the AV data receiving device 4 p of the sixth embodiment.
- the AV data transmitting device 3 r operates in the same manner as the AV data transmitting device 3 q except for the decryption unit 5 95, and the AV data receiving device 4 r operates in the decryption unit.
- the operation of the part other than 596 performs the same operation as that of the AV data receiver 4q.
- the operation of the ID management remote controller 5r other than the encryption unit 597 performs the same operation as that of the ID management remote controller 5q.
- the AV data transmitter 3r, the AV data receiver 4r, and the remote controller 5r for ID management are configured, unlike the seventh embodiment, the AV data transmitter 3r and the AV data receiver
- the ID code encrypted from 4r is received by the remote controller for ID management 5r, decrypted and stored.
- the ID management remote controller 5r re-encrypts the stored ID code and transmits it to the AV data transmitting device 3r and the AV data receiving device 4r that will communicate next.
- the AV data transmitting device 3r and the AV data receiving device 4r that have received the decrypted ID code decrypt the encrypted ID code and compare the decrypted ID code with the own device's ID code.
- the ID management output unit 52 (53) of the AV data transmitter 3r (AV data receiver 4r) stores the ID encrypted by the encryption unit 590 (591).
- the ID code in section 520 (560) is transmitted to ID management remote control 5r.
- the ID management remote controller 5r that has received the encrypted ID code decrypts the decryption by the decryption unit 592, and then stores it in the ID storage unit 570.
- the ID management remote controller 5 r reads the ID code stored in the ID storage section 570 and encrypts it.
- the ID code is encrypted by the encryption unit 597, transmitted from the ID management output unit 573, and the ID code in the ID storage unit 5770 is deleted.
- the ID management control section 5 6 1 (5 2 1) )
- To the decryption unit 5996 (595).
- the received ID code is decrypted by the decryption unit 595 (595), and the ID management control unit 561 (512) stores the ID code in the ID storage unit 560 (520). Compare with the ID code. The result of this comparison is given to the result display section 581 (580) and displayed.
- S TE P 1 to S TE P 5 and STEP 301 are performed between the AV data transmitter 3 r and the ID management remote controller 5 r, so that the AV data transmitter receiving the ID request signal After the ID code of 3r is transmitted after being encrypted, it is received by the ID management remote control 5r. Then, the encrypted ID code is sent to the decryption section 597 to be decrypted (STEP 401), and then stored in the ID storage section 570 (STEP 6).
- the ID code is stored in the ID storage unit 570.
- the ID code is read out by the ID management control section 571 (STEP 403), and is encrypted by the encryption section 592 (STEP 404).
- this encrypted ID code is transmitted from the ID management output section 573 (STEP 405), it is received by the ID management input section 563 of the AV data receiving device 4r (STEP 405). 4 6).
- the ID management remote controller 5r deletes the ID code stored in the ID storage section 570 (STEP 14).
- the received ID code is sent from the ID management control section 561 to the decryption section 5996, and decrypted (STEP 407). Then, the decrypted ID code and the ID code stored in the ID storage unit 560 are compared by the ID management control unit 561 (STEP 408). The result of this comparison is given to the result display section 581, and is displayed (STEP 409).
- the ID code stored in the ID management remote controller 5r is decrypted and then transmitted after being encrypted.
- a configuration without the encryption unit may be used.
- the ID code transmitted from the ID management remote controller 5 may be decrypted in the AV data transmitting device 3r and the AV data receiving device 4r.
- the communication connection relationship is determined by comparing the ID code received by the AV data transmitting device 3r and the AV data receiving device 4r with the ID code of the own device after decrypting the decrypted ID code.
- the communication connection relationship may be determined based on whether or not the received ID code can be decrypted.
- the encryption keys used by the AV data transmitting device 3 r and the AV data receiving device 4 r for encryption in the encryption sections 590 and 591 are:
- the ID may be stored in advance, or may be transmitted together with the ID request signal from the ID management remote controller 5r. Further, when the encryption keys are stored in the encryption units 59, 591, 597, the encryption key may be transmitted to the transmission destination together with the encrypted ID code.
- the encryption key may be changed every time for encryption. At this time, the encryption key may be changed based on time.
- the ID code stored in the ID storage unit 570 is stored until the predetermined time elapses, or until the number of matches exceeds the predetermined number, or erased. Until instructed, it may be stored. At this time, while the ID code is stored in the ID storage unit 570, the ID code stored in the ID storage unit 570 is transmitted to the plurality of AV data transmitting devices 3r and the AV data receiving devices 4r. The communication connection relationship is confirmed by the AV data transmitting device 3r and the AV data receiving device 4r that have transmitted and received this ID code.
- the ID management remote controller 5 r compares the ID code in the ID management control unit 571 and compares the comparison result indicating the communication connection relationship of each device with the encryption unit 597.
- the data may be encrypted and transmitted.
- the AV data transmitting device 3 r and the AV data receiving device 4 r respectively receive the encrypted comparison result at the ID management input sections 52 2, 56 2, and then the decryption section 5 9 After decrypting at 5, 596, it is sent to the result display section 580, 581.
- the ID code encryption is applied to the first embodiment, but can be applied to the third to fifth embodiments.
- the remote controller for ID management reads out and encrypts a plurality of ID codes from the ID storage unit, and then transmits the AV data to the AV data transmitting device 3r. Or, it transmits to the AV data receiver 4r. At this time, a code for identifying a device having the ID code is added to each ID code.
- the After decrypting the device compare it with each ID code to confirm the device that matches the ID 'code of its own device, and output and display it on the result display section.
- the communication connection relationship of each device may be confirmed based on a plurality of ID codes including the ID code of the own device, and output and displayed on the result display unit.
- the device name of each device when the ID code is transmitted from the AV data transmitting device and the AV data receiving device to the ID management remote controller, the device name of each device may be transmitted together. I do not care. At this time, when the comparison result is displayed on the result display section of the ID management remote controller, the AV data transmission device, or the AV data reception device, the device name of each device may be displayed.
- the ID management input section and the ID management output section are configured as a part of an infrared transmitting / receiving section that transmits and receives remote control data.
- the ID management input section may be included in the remote control output section.
- the management output unit may be included in the remote control data reception unit.
- the comparison result is displayed on the result display unit.However, the result may be displayed by turning on or blinking a light emitting element or the like. It doesn't matter.
- the configuration of the ID management system has been described by taking an AV data wireless communication system as an example. However, not only AV data but also other data is communicated by wire or wirelessly. In the wireless communication system that performs the above, the ID management system in each of the above embodiments can be used. Industrial applicability
- a communication connection relationship of a plurality of data processing devices constituting a wireless communication system can be output to a result output unit. Therefore, the user can easily confirm and confirm the communication connection relationship of each data processing device by confirming the output from the result output unit. This makes it possible to confirm whether or not the cause of the non-transmission / reception of data between the specific data processing devices is due to the mismatch of the encryption codes. Also, for data processing devices that are located far away from electronic devices, check their communication connection relationships. Can be.
- the electronic device can automatically obtain the encryption code from the data processing device, the user does not need to input the encryption code, and the operation can be facilitated. Also, since the encryption code is not directly displayed, it is possible to prevent the encryption code from being leaked. Further, since the encrypted code is encrypted and transmitted to and from the data processing device and the electronic device, a more secure system for preventing leakage of the encrypted code can be provided.
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- Engineering & Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Signal Processing (AREA)
- Selective Calling Equipment (AREA)
Abstract
Description
Claims
Priority Applications (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US10/543,009 US20060140404A1 (en) | 2003-03-07 | 2004-03-03 | System for managing encrypted code, data processor and electronic apparatus |
| JP2005503081A JPWO2004079987A1 (ja) | 2003-03-07 | 2004-03-03 | 暗号化コード管理システム及びデータ処理装及び電子機器 |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2003-62089 | 2003-03-07 | ||
| JP2003062089 | 2003-03-07 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2004079987A1 true WO2004079987A1 (ja) | 2004-09-16 |
Family
ID=32958992
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/JP2004/002672 Ceased WO2004079987A1 (ja) | 2003-03-07 | 2004-03-03 | 暗号化コード管理システム及びデータ処理装置及び電子機器 |
Country Status (4)
| Country | Link |
|---|---|
| US (1) | US20060140404A1 (ja) |
| JP (1) | JPWO2004079987A1 (ja) |
| CN (1) | CN1757196A (ja) |
| WO (1) | WO2004079987A1 (ja) |
Families Citing this family (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2006074478A (ja) * | 2004-09-02 | 2006-03-16 | Toshiba Corp | 無線通信装置 |
| KR101368166B1 (ko) * | 2007-07-09 | 2014-03-03 | 삼성전자주식회사 | 가시광 통신을 이용한 주변기기 인터페이스에서 재접속방법 |
| JP2009123146A (ja) * | 2007-11-19 | 2009-06-04 | Panasonic Corp | 再構成可能な回路装置及び受信装置 |
| CN104012108B (zh) * | 2012-09-28 | 2018-07-31 | 松下知识产权经营株式会社 | 设备分类方法、设备分类系统 |
| CN107025403B (zh) * | 2016-01-29 | 2020-04-07 | 大连秘阵科技有限公司 | 一种动态图形密码管理方法及系统 |
Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
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| JPH10271573A (ja) * | 1997-03-21 | 1998-10-09 | Sony Corp | リモートコントローラ、リモートコントローラ設定方法、電気機器、および、電気機器制御方法 |
| JP2001217846A (ja) * | 1999-11-22 | 2001-08-10 | Toshiba Corp | 情報交換装置及び情報交換方法 |
Family Cites Families (11)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4754482A (en) * | 1985-11-26 | 1988-06-28 | Samco Investment Company | Method and apparatus for synchronizing encrypting and decrypting systems |
| US4654480A (en) * | 1985-11-26 | 1987-03-31 | Weiss Jeffrey A | Method and apparatus for synchronizing encrypting and decrypting systems |
| US5400402A (en) * | 1993-06-07 | 1995-03-21 | Garfinkle; Norton | System for limiting use of down-loaded video-on-demand data |
| US5933500A (en) * | 1996-05-31 | 1999-08-03 | Thomson Consumer Electronics, Inc. | Adaptive decoding system for processing encrypted and non-encrypted broadcast, cable or satellite video data |
| US6026165A (en) * | 1996-06-20 | 2000-02-15 | Pittway Corporation | Secure communications in a wireless system |
| US7039802B1 (en) * | 1997-06-06 | 2006-05-02 | Thomson Licensing | Conditional access system for set-top boxes |
| US6229895B1 (en) * | 1999-03-12 | 2001-05-08 | Diva Systems Corp. | Secure distribution of video on-demand |
| KR100511178B1 (ko) * | 2001-03-08 | 2005-08-30 | 김석배 | 무선통신 단말기로 전화를 걸기 위해 발신되는 신호를 이용한 보안장치 및 그 방법 |
| US7328345B2 (en) * | 2002-01-29 | 2008-02-05 | Widevine Technologies, Inc. | Method and system for end to end securing of content for video on demand |
| JP4195573B2 (ja) * | 2002-04-03 | 2008-12-10 | Tdk株式会社 | 記録データの記録方法、記録データの再生方法、記録装置、再生装置、および多層光記録媒体 |
| US20050097596A1 (en) * | 2003-10-31 | 2005-05-05 | Pedlow Leo M.Jr. | Re-encrypted delivery of video-on-demand content |
-
2004
- 2004-03-03 WO PCT/JP2004/002672 patent/WO2004079987A1/ja not_active Ceased
- 2004-03-03 US US10/543,009 patent/US20060140404A1/en not_active Abandoned
- 2004-03-03 JP JP2005503081A patent/JPWO2004079987A1/ja active Pending
- 2004-03-03 CN CN200480005950.8A patent/CN1757196A/zh active Pending
Patent Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH10271573A (ja) * | 1997-03-21 | 1998-10-09 | Sony Corp | リモートコントローラ、リモートコントローラ設定方法、電気機器、および、電気機器制御方法 |
| JP2001217846A (ja) * | 1999-11-22 | 2001-08-10 | Toshiba Corp | 情報交換装置及び情報交換方法 |
Also Published As
| Publication number | Publication date |
|---|---|
| JPWO2004079987A1 (ja) | 2006-06-08 |
| US20060140404A1 (en) | 2006-06-29 |
| CN1757196A (zh) | 2006-04-05 |
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