[go: up one dir, main page]

HK1025852B - Apparatus for storing voice messages in a wireless telephone system - Google Patents

Apparatus for storing voice messages in a wireless telephone system Download PDF

Info

Publication number
HK1025852B
HK1025852B HK00103516.9A HK00103516A HK1025852B HK 1025852 B HK1025852 B HK 1025852B HK 00103516 A HK00103516 A HK 00103516A HK 1025852 B HK1025852 B HK 1025852B
Authority
HK
Hong Kong
Prior art keywords
voice message
telephone
message
voice
bsc
Prior art date
Application number
HK00103516.9A
Other languages
German (de)
French (fr)
Chinese (zh)
Other versions
HK1025852A1 (en
Inventor
Peter Larocca
Original Assignee
Qualcomm Incorporated
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from US08/806,980 external-priority patent/US6069888A/en
Application filed by Qualcomm Incorporated filed Critical Qualcomm Incorporated
Publication of HK1025852A1 publication Critical patent/HK1025852A1/en
Publication of HK1025852B publication Critical patent/HK1025852B/en

Links

Description

BACKGROUND OF THE INVENTION I. Field of the Invention
The present invention relates generally to an apparatus for storing voice messages in a wireless telephone system.
II. Description of the Related Art
Voice mail systems are ubiquitous in modern telephone systems, including wireless telephone systems. In the wireless telephone context, however, current voice mail systems can degrade recorded messages, because the recorded messages are encoded and decoded multiple times.
More particularly, in the context of code division multiple access (CDMA) wireless telephone systems, a transmitting telephone encodes voice signals using a vocoder, prior to transmitting the signals over the air. A preferred CDMA system is described in U.S. Patent Nos. 4,901,307 and 5,103,459, both of which are assigned to the same assignee as is the present invention. Also, a preferred vocoder is disclosed in U.S. Patent No. 5,414,796, which is also assigned to the same assignee as is the present invention.
When a person attempts to call a wireless station user from a landline telephone, the call is routed through a public switch telephone network (PSTN). The PSTN connects the call to a base station controller (BSC) which controls the operation of a plurality of base stations that serve a common geographic area. When it receives the call from the PSTN or another wireless telephone, the BSC determines whether the recipient wireless telephone is currently registered with any base station. If the wireless telephone is not registered (or it is registered but it does not pick up), the call is directed to a voice mail system that encodes and stores a voice message intended for the recipient wireless telephone user.
Subsequently, the wireless telephone user can access the voice mail system to retrieve the message, at which time the message is decoded and sent to the BSC. At the BSC, the message is once again encoded, then sent to a base station for transmission to the wireless telephone. Upon receipt of the message, the wireless telephone must once again decode the message. Hence, in existing wireless telephone system voice mail systems, a voice mail message undergoes two encoding/decoding cycles, once when the message is stored and again when the receiving person accesses his or her voice mail. Unfortunately, the quality of the voice message is degraded as an undesirable consequence of multiple encodings and decodings.
WO 95 22817 A discloses a method and apparatus for minimizing audio degradation in scenarios in which tandem coding occurs, with a voice mail service as a particular example of such a scenario. Tandem coding is defined as the multiple and successive encoding of a same speech signal between nodes of a communication system, for instance when the functionality of a particular node along the transmission route calls for an alternative signal format.
The apparatus and corresponding method of WO 95 22817 A determine characteristics of a coded audio signal, according to which the signal is classified as to whether further coding should be performed, or otherwise, and therefore which rate and/or type of coding should be performed. The characteristics are identified as quality characteristics and the rate, type and source of previous coding, while the sources of previous coding are indicated as an analogue or digital network, a PSTN or a wireless communication system. The voice mail service of WO 95 22817 A subsequently codes said signal with the best coding algorithm available or does not code the signal at all but stores it as a full-bandwidth PCM signal. Audio degradation is therefore minimized as re-encoding of all signals is performed according to their quality, in respect of which poor-quality signals are least encoded, or are not encoded at all, best-quality signals are re-encoded to minimize bandwidth/storage requirements and intermediate-quality signals are selectively re-encoded.
WO 93 00778 A discloses a speech signal transmission network in which communication between the nodes (handsets) is achieved using a standard (GSM or DECT) selected to minimize bandwidth use. The network of WO 93 00778 A operates the network connection between the Base Station and the MSC in an Asynchronous Transfer Mode (ATM), such that conversion of the ATM-formatted GSM data packets is not required between GSM-connected handsets, even if the packets must transit between separate MSCs connected via the PSTN. Bandwidth is therefore preserved for ATM-formatted GSM data packets, which do require conversion into a full-bandwidth PCM signal, such as when a speech signal is routed between a mobile handset and a fixed handset and reciprocally.
The present invention aims to provide a voice mail system for a wireless telephone system which renders relatively high quality voice mail messages. The present invention also aims to provide a voice mail system for a wireless telephone system which minimizes the number of encoding/decoding cycles voice mail messages must undergo. The present invention also aims to provide a voice mail system for a wireless telephone system which is easy to use and cost-effective to manufacture and implement.
SUMMARY OF THE INVENTION
In one aspect the invention provides a computer logic device for a wireless telephone system including a base station controller (BSC) and a plurality of wireless telephones, the logic device comprising: a computer logic storage device readable by a digital processing system; and code means embodied in the logic storage device, the code means comprising instructions being executable by the digital processing system, the code means being specifically adapted for performing method steps for storing and relaying voice messages, characterized in that said steps of storing and relaying of voice messages comprise: receiving a voice message at the BSC, the voice message being intended for a called telephone; when the called telephone does not pick up, if the message is from a wireless telephone in the system, storing the message without further encoding or decoding of the message, and otherwise encoding the message and then storing the message at the BSC.
In another aspect the invention provides an apparatus for storing voice messages in a wireless telephone system, the apparatus comprising: means for determining whether a called wireless telephone has received a voice signal intended therefor; characterized in that said apparatus further comprises means for processing the signal for storage of a voice message if the signal is not received by the called wireless telephone, which means comprises both means for determining whether the signal represents the voice message as compressed or uncompressed data and means for compressing uncompressed data; and means for storing compressed data representing the voice message.
In a wireless telephone system including a base station controller (BSC), a base station, and at least one wireless telephone, a computer logic device is disclosed which includes a computer logic storage device readable by a digital processing system. Instructions are embodied in the logic storage device, and the instructions are executable by the digital processing system for performing method steps for storing and relaying voice messages. As disclosed in detail below, the method steps include receiving a voice message at the BSC, wherein the voice message is intended for a called telephone. When the called telephone does not pick up, if the message is not from a wireless telephone it is encoded and then stored at the BSC. Otherwise, i.e., if the message is from another wireless telephone and consequently is already encoded, the message (after having been received and demodulated at the base station transceiver) is not decoded, and stored at the BSC.
Preferably, the method steps further include receiving a voice mail access call from an accessing telephone at the BSC. When the accessing telephone is an accessing wireless telephone in the same system as the BSC, the voice message is retrieved from storage and transmitted to the accessing wireless telephone without decoding the voice message at the BSC. Otherwise (i.e., when the accessing telephone is not in the BSC system, e.g., when the accessing telephone is a fixed telephone), the voice message is retrieved from storage, decoded at the BSC, and sent to the accessing telephone over a PSTN.
In a presently preferred embodiment, the digital modulation format is code division multiple access (CDMA) format. Additionally, the method steps further include determining whether the called telephone is a voice mail subscriber, and storing the message only when the called telephone is a voice mail subscriber. The computer logic device is also disclosed in combination with the BSC.
In another aspect, a computer-implemented method is disclosed for storing and relaying a voice message that has been generated in a wireless telephone system. The method includes determining whether the voice message should be stored, and if the voice message should be stored, storing the voice message. Then, the message is subsequently relayed to an accessing telephone for playing back of the voice message. Thus the voice message undergoes at most a single encoding/decoding cycle from when it is generated to when it is played back.
In still another aspect, a wireless telephone system includes at least one base station for receiving an incoming voice message transmitted by a sending telephone to a called telephone and for transmitting an outgoing voice message to an accessing telephone. The system includes a base station controller (BSC) that is associated with the base station. Logic means are provided at the BSC for storing the incoming voice message in speech encoded format that is compatible with the wireless communication system format when the called telephone does not pick up. Moreover, logic means at the BSC cause the voice message to be transmitted as the outgoing voice message in speech encoded format to the accessing telephone when the accessing telephone is a wireless telephone. Furthermore, logic means at the BSC decodes the voice message and then sends the voice message as the outgoing voice message to the accessing telephone when the accessing telephone is not a wireless telephone in the BSC system.
BRIEF DESCRIPTION OF THE DRAWINGS
In order that the invention may be better understood an embodiment will be described by way of example and with reference to the accompanying drawings, in which like reference numerals refer to like parts, and in which:
  • Figure 1 is a schematic diagram of a wireless telephone system for implementing a voice message system embodying the present invention;
  • Figure 2 is a flow chart showing the steps for receiving and storing a voice mail message; and
  • Figure 3 is a flow chart showing the steps for retrieving and relaying voice mail messages.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
Referring initially to Figure 1, a digital wireless telephone system is shown, generally designated 10, which includes at least one base station system, generally designated 12. As shown, the base station system 12 includes a base station transceiver subsystem (BTS) 14 and an associated base station controller (BSC) 16. In accordance with well-known principles, the BSC 16 controls plural BTS, although for clarity of disclosure only a single BTS 14 is shown in Figure 1. The BTS 14 can communicate with at least first and second wireless telephones 18, 20 via respective wireless links 22, 24. Furthermore, the BTS 14 can communicate with one or more non-system 10 telephones, such as a conventional fixed telephone 26, via a public switch telephone network (PSTN) 27.
The BTS 14 includes a modulator 14a for modulating waveforms to be transmitted in accordance with the modulation principles of the system 10 (in the preferred embodiment, CDMA modulation principles). Similarly, the BTS 14 includes a demodulator 14b for demodulating received waveforms in accordance with the demodulation principles of the system 10.
Communication via the wireless links 22, 24 requires that messages transmitted over the links 22, 24 be encoded in digital format and modulated. Accordingly, each wireless telephone 18, 20 includes respective encoding and decoding systems 30, 32 for converting voice signals to digital format for transmission thereof to the BTS 14, and for decoding signals from the BTS 14 to voice signals. In the presently preferred embodiment, the wireless air interface digital format is code division multiple access (CDMA) format. Accordingly, the preferred system 10 is a CDMA system, details of which can be found, for example, in U.S. Patent Nos. 4,901,307 and 5,103,459, assigned to the same assignee as is the present invention. In further accord with the preferred embodiment, the encoding/decoding systems 30, 32 include respective vocoders, details of preferred embodiments of which are set forth in U.S. Patent No. 5,414,796, assigned to the same assignee as is the present invention.
Figure 1 shows that the BSC 16 includes a vocoder including an encoder 34 that receives packetized pulse code modulation (PCM) signals from the PSTN 27. The encoder 34 encodes the speech signal, it being understood that messages to be transmitted are modulated by the modulator 14a in the BTS 14 after encoding as mentioned above. Also, the vocoder of the BSC 16 includes a decoder 38 that decodes demodulated CDMA signals from the demodulator 14b of the BTS 14. From the decoder 38, the signals are sent to the PSTN 27 (and, hence, the fixed telephone 26).
A microprocessor 42 communicates encoded signals to the modutator 14a of the BTS 14 via an outgoing communication link 44. Also, the microprocessor 42 receives demodulated CDMA-formatted signals from the BTS 14 via an incoming communication link 46. Further, as shown in Figure 1 the microprocessor 42 communicates with the vocoder BSC encoder 34 and with the BSC decoder 38. Moreover, the BSC 16 includes an electronic data storage device 48 for storing data from the microprocessor 42, with the data storage device being accessible by the microprocessor 42. The data storage device 48 can be any suitable device, e.g., a solid state memory device, hard disk drive, optical drive, or tape drive.
Figure 1 also shows that the microprocessor 42 preferably includes a program storage device 50, which includes instructions that are used by the microprocessor 42. Accordingly, those skilled in the art will recognize that the microprocessor 42 can include a programmable central processing unit (CPU), or a programmable gate array chip, or an application specific integrated circuit (ASIC).
Figures 2 and 3 illustrate the structure of the embodied in computer-readable logic structures on the storage device 50 (Figure 1). Those skilled in the art will appreciate that the Figures illustrate the logic that is practiced in one embodiment by a machine component that renders the logic elements in a form that instructs a digital processing apparatus (that is, a computer or microprocessor) to perform a sequence of operational steps corresponding to those shown in the Figures.
These instructions may reside in, i.e., be embodied by, logic structures/circuits on a data storage device including a data storage medium, such as the storage device 50 shown in Figure 1. The machine component shown in Figure 1 is a combination of logic elements that are embodied in the storage device 50, which advantageously can be electronic read-only memory (ROM) or electronic random access memory (RAM), or other appropriate data storage device. Alternatively, the instructions can be embodied in the form of computer program code elements on semiconductor devices, on magnetic tape, on optical disks, on a DASD array, on magnetic tape, on a conventional hard disk drive, or other appropriate data storage device.
Now referring to Figure 2, the incoming call storage can be seen. The BSC 16 receives an incoming call at block 52. The incoming call can be initiated from one of the wireless telephones 18, 20 in the system 10, in which case the incoming call is sent from the BTS 14 to the BSC 16. Or, the incoming call can be initiated from a non-system 10 telephone, such as the fixed telephone 26, in which case the call is received from the PSTN 27. The logic proceeds to decision diamond 54 to determine whether the called telephone (i.e., the "receiver") picked up.
If the called party has picked up, the logic moves to block 56 to connect the originating telephone with the called telephone after encoding the message if appropriate (i.e., when the call originated from a fixed telephone 26). On the other hand, if the called party has not picked up, the logic proceeds to decision diamond 58 to determine whether the called party is a voice mail subscriber of the BSC 16. In making this determination, the microprocessor 42 can access a subscriber list that is stored in the BSC 16. If the called party is not a voice mail subscriber of the BSC 16, the logic exits at state 60, but if the receiver has not picked up and is a voice mail subscriber, the logic proceeds to decision diamond 62.
Decision diamond 62 represents the logic branches that are followed, based on the type of telephone that initiated the call. Specifically, when the incoming call is in CDMA format and, hence, was originated from one of the wireless telephones 18, 20 in the system 10, the logic moves to block 64. At block 64, the message, having been demodulated when received by the BTS 14, is not decoded prior to storage, but instead is stored in its encoded format. Thus, at block 66 the encoded message is stored in the data storage 48 (Figure 1). On the other hand, if the call was received from the PSTN 27, the logic moves to block 67, wherein the signal is encoded by the vocoder 35. The encoded message is then stored at block 66.
Figure 3 shows the process by which voice mail messages are retrieved from the BSC 16. Commencing at block 68, the BSC 16 receives a voice mail access call from one of the telephones 18, 20, 26. As was the case with decision diamond 54 in Figure 2, decision diamond 70 in Figure 3 represents the logic branches that are followed, based on the type of telephone that initiated the access call.
When the accessing telephone is accessing via the PSTN 27, the logic moves to block 72 to retrieve the voice mail message from the data storage 48 and then to send the message to the decoder 38 of the BSC 16 to decode the message. The decoded message is then sent to the fixed telephone 26. Thus, a wireless telephone user can access his or her voice mail using a fixed telephone or other non-system 10 wireless telephone, if desired.
Alternatively, the user can access his or her voice mail using one of the wireless telephones 18, 20, in which case the logic moves from decision diamond 70 to block 76. At block 76, the encoded message is retrieved from the data storage 48, sent to the BTS 14 and modulated by the modulator 14b of the BTS 14, and then transmitted in CDMA format to the accessing wireless telephone 18, 20. At block 78, the accessing wireless telephone 18, 20 demodulates and decodes the message to a voice signal.
With the above disclosure in mind, it can now be appreciated that a call can be placed by a wireless telephone 18, 20 or a fixed telephone 26, for receipt thereof by a wireless telephone 20, 18. In the event that the called wireless telephone 20, 18 does not pick up, the call can be stored as a voice mail message at the BSC 16. Then, the user of the called wireless telephone 20, 18 can access the voice mail message from a wireless telephone 20, 18 or from a fixed telephone 26 to retrieve the message. Regardless of the type of telephone that initiated the voice mail message, and regardless of the type of telephone that retrieves the message, the message undergoes only a single encoding/decoding cycle from the time it is generated to the time it is listened to by a user, thereby improving the quality of the message, compared to voice mail systems wherein messages might undergo several encoding/decoding cycles. As used herein, the terms "encoding" and "decoding" refer to vocoding processes, i.e., the processes undertaken in a wireless telephone system to convert a voice-formatted message to a digital message and back again, using a vocoder.
While the particular INTEGRATED VOICE MAIL SYSTEM FOR CDMA NETWORK as herein shown and described in detail is fully capable of attaining the above-described aims of the invention, it is to be understood that it is the presently preferred embodiment of the present invention and is thus representative of the subject matter which is broadly contemplated by the present invention, that the scope of the present invention fully encompasses other embodiments which may become obvious to those skilled in the art, and that the scope of the present invention is accordingly to be limited by nothing other than the appended claims.

Claims (14)

  1. A computer logic device for a wireless telephone system (10) including a base station controller (BSC) (16) and a plurality of wireless telephones (18, 20), the logic device comprising:
    a computer logic storage device (50) readable by a digital processing system (42); and code means embodied in the logic storage device (50), the code means comprising instructions being executable by the digital processing system (42), the code means being specifically adapted for performing method steps for storing and relaying voice messages,
    characterized in that said steps of storing and relaying of voice messages comprise:
    receiving a voice message at the BSC (16), the voice message being intended for a called telephone (18, 20);
    when the called telephone does not pick up, if the message is from a wireless telephone (18, 20) in the system, storing the message without further encoding or decoding of the message, and otherwise encoding the message and then storing the message at the BSC (16).
  2. The computer logic device of Claim 1, wherein said steps of storing and relaying of voice messages further comprise:
    receiving a voice message access call from an accessing telephone (18, 20, 26) at the BSC (16);
    when the accessing telephone is an accessing wireless telephone (18, 20) in the system (10), retrieving the voice message from storage (48) and transmitting the voice message to the accessing wireless telephone (18, 20) without decoding the voice message at the BSC (16);
    otherwise retrieving the voice message from storage (48), decoding the voice message at the BSC, and sending a modulated version of the voice message to the accessing telephone (26).
  3. The computer logic device of Claim 2, wherein the message is transmitted to the accessing wireless telephone (18, 20) in code division multiple access, CDMA, format.
  4. The computer logic device of Claim 3, wherein said steps of storing and relaying of voice messages further comprise:
    determining whether the called telephone (18, 20) is a voice mail subscriber; and
    storing the message only when the called telephone (18, 20) is a voice mail subscriber.
  5. A computer-implemented method for storing and relaying a voice message that has been generated in a wireless telephone system (10), comprising the steps of:
    determining whether the voice message should be stored;
    characterized in that, if the voice message should be stored, said method comprises the steps of storing the voice message and subsequently relaying the voice message to an accessing telephone (18, 20, 26) for playing back of the voice message, the voice message undergoing at most a single encoding/decoding cycle from when it is generated to when it is played back.
  6. The computer-implemented method of Claim 5, wherein the voice message is intended for a called telephone (18, 20), and the determining step includes:
    determining whether the called telephone (18, 20) picks up;
    when the called telephone (18, 20) does not pick up, determining whether the called telephone (18, 20) is a voice mail subscriber; and
    determining that the voice message should be stored when the called telephone (18, 20) is a voice mail subscriber.
  7. The computer-implemented method of Claim 6, further comprising:
    if the voice message is not generated by a wireless telephone (18, 20) in the system (10), encoding the message and then storing the message at a base station controller (BSC) (16), and otherwise storing the message at the BSC (16) without decoding the message.
  8. The computer-implemented method of Claim 7, further comprising:
    receiving a voice message access call from an accessing telephone (18, 20, 26) at the BSC (16);
    when the accessing telephone is an accessing wireless telephone (18, 20) in the system, retrieving the voice message from storage (48) and transmitting the voice message to the accessing wireless telephone (18, 20) without decoding the voice message at the BSC (16);
    otherwise retrieving the voice message from storage (48), decoding the voice message at the BSC (16), and sending the voice message to the accessing telephone (26).
  9. The computer-implemented method of Claim 8, wherein the message is transmitted to a wireless telephone (18, 20) in code division multiple access (CDMA) format.
  10. A wireless telephone system (10) including at least one base station (12) for receiving an incoming voice message transmitted by a sending telephone (18, 20, 26) to a called telephone (18, 20) and for transmitting an outgoing voice message to an accessing telephone (18, 20, 26), comprising a base station controller (BSC) (16) associated with the base station (12) and logic means (50) at the BSC (16), characterized in that said logic means (50) at the BSC (16) is adapted to store the incoming voice message in encoded format when the called telephone (18, 20) does not pick up; said logic means (50) at the BSC (16) is adapted to cause the voice message to be transmitted as the outgoing voice message in encoded format to the accessing telephone when the accessing telephone is a wireless telephone (18, 20) in the system (10); and said logic means (50) at the BSC (16) is adapted to decode the voice message from CDMA format and then to send the voice message as the outgoing voice message to the accessing telephone when the accessing telephone (26) is not a wireless telephone (18, 20) in the system (10).
  11. The system of Claim 10, further comprising:
    logic means (50) at the BSC (16) for encoding the voice message when the incoming voice message is not from a wireless telephone (18, 20) in the system (10), prior to storing the voice message.
  12. The system of Claim 11, further comprising:
    logic means (50) at the BSC (16) for receiving a voice message access call from an accessing telephone (18, 20, 26) ;
    logic means (50) at the BSC (16) for, when the accessing telephone is an accessing wireless telephone (18, 20) in the system (10), retrieving the voice message from storage (48) and transmitting the voice message to the accessing wireless telephone (18, 20) without decoding the voice message at the BSC (16); and
    logic means (50) at the BSC (16) for, when the accessing telephone is not an accessing wireless telephone (18, 20) in the system (10), retrieving the voice message from storage (48), decoding the voice message at the BSC (16), and sending the voice message to the accessing telephone (26).
  13. An apparatus for storing voice messages in a wireless telephone system (10), the apparatus comprising:
    means (42) for determining whether a called wireless telephone (18, 20) has received a voice signal intended therefor;
    characterized in that said apparatus further comprises means (42) for processing the signal for storage of a voice message if the signal is not received by the called wireless telephone (18, 20), which means comprises both means (42) for determining whether the signal represents the voice message as compressed or uncompressed data and means (34) for compressing uncompressed data; and
    means (48) for storing compressed data representing the voice message.
  14. An apparatus as claimed in claim 13, further comprising:
    means (42) for enabling access to a voice message in response to an access request by an authorized recipient;
    means (42) for determining whether the access request is from a source (18, 20) adapted to receive a voice signal representing a voice as compressed data or from a source (26) adapted to receive a voice signal representing a voice as uncompressed data;
    means (42) for modulating the compressed data onto a signal for transmission if the source is adapted to receive compressed data; and
    means (38) for decompressing compressed data representing the voice message for transmission if the source is adapted to receive uncompressed data.
HK00103516.9A 1997-02-26 1998-02-26 Apparatus for storing voice messages in a wireless telephone system HK1025852B (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
US08/806,980 US6069888A (en) 1997-02-26 1997-02-26 Integrated voice mail system for CDMA network
US08/806,980 1997-02-26
PCT/US1998/003764 WO1998038783A1 (en) 1997-02-26 1998-02-26 Apparatus for storing voice messages in a wireless telephone system

Publications (2)

Publication Number Publication Date
HK1025852A1 HK1025852A1 (en) 2000-11-24
HK1025852B true HK1025852B (en) 2006-06-23

Family

ID=

Similar Documents

Publication Publication Date Title
EP0963651B1 (en) Apparatus for storing voice messages in a wireless telephone system
EP1074125B1 (en) Alternating speech and data transmission in digital communications systems
US6754265B1 (en) VOCODER capable modulator/demodulator
US6977921B1 (en) Using discrete message-oriented services to deliver short audio communications
US7023819B2 (en) Method for reducing the number of vocoders in a wireless network
JPH11503582A (en) Transcoder prevents tandem coding of speech
JPH10509850A (en) Digital mobile communication system
USRE40778E1 (en) Mobile radio telephone capable of recording/reproducing voice signal and method for controlling the same
EP1254569B1 (en) Tone signalling with tfo communication links
US20040198323A1 (en) Method, system and network entity for providing text telephone enhancement for voice, tone and sound-based network services
JP2006295931A (en) Voice codec switching apparatus and switching method in mobile communication terminal
JP2000507064A (en) Speech channel back loop detection
US6622275B2 (en) Method and apparatus supporting TDD/TTY modulation over vocoded channels
JP4077037B2 (en) Method and apparatus for mapping between cellular bitstream and wired waveform
EP0781062A2 (en) Radiotelephone system
HK1025852B (en) Apparatus for storing voice messages in a wireless telephone system
KR100617824B1 (en) Mobile communication terminal and its automatic response method
US7117006B2 (en) Portable cellular phone system with automatic answering telephone function
US20030013465A1 (en) System and method for pseudo-tunneling voice transmissions
JPH06311233A (en) Voice mail system
US7149198B2 (en) System and method for voice processing and transporting in a protocol independent tandem free operation manner
JP3764339B2 (en) Voice communication system
JPH11103345A (en) Voice storage method and voice storage system
JPH11340928A (en) Digital mobile communication terminal
AU4299499A (en) Alternating speech and data transmission in digital communications systems