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WO2014048175A1 - Hearing-aid and anti-noise method and apparatus for bluetooth earphone - Google Patents

Hearing-aid and anti-noise method and apparatus for bluetooth earphone Download PDF

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Publication number
WO2014048175A1
WO2014048175A1 PCT/CN2013/081065 CN2013081065W WO2014048175A1 WO 2014048175 A1 WO2014048175 A1 WO 2014048175A1 CN 2013081065 W CN2013081065 W CN 2013081065W WO 2014048175 A1 WO2014048175 A1 WO 2014048175A1
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WO
WIPO (PCT)
Prior art keywords
audio signal
bluetooth
module
hearing
frequency
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Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2013/081065
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French (fr)
Chinese (zh)
Inventor
黄勋德
黎广钊
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Anpac Semiconductor Ltd
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Anpac Semiconductor Ltd
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Publication date
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Priority to CN201380004354.7A priority Critical patent/CN104521247B/en
Publication of WO2014048175A1 publication Critical patent/WO2014048175A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R25/00Deaf-aid sets, i.e. electro-acoustic or electro-mechanical hearing aids; Electric tinnitus maskers providing an auditory perception
    • H04R25/40Arrangements for obtaining a desired directivity characteristic
    • H04R25/407Circuits for combining signals of a plurality of transducers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R2225/00Details of deaf aids covered by H04R25/00, not provided for in any of its subgroups
    • H04R2225/41Detection or adaptation of hearing aid parameters or programs to listening situation, e.g. pub, forest
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R2225/00Details of deaf aids covered by H04R25/00, not provided for in any of its subgroups
    • H04R2225/61Aspects relating to mechanical or electronic switches or control elements, e.g. functioning
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R2460/00Details of hearing devices, i.e. of ear- or headphones covered by H04R1/10 or H04R5/033 but not provided for in any of their subgroups, or of hearing aids covered by H04R25/00 but not provided for in any of its subgroups
    • H04R2460/01Hearing devices using active noise cancellation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R25/00Deaf-aid sets, i.e. electro-acoustic or electro-mechanical hearing aids; Electric tinnitus maskers providing an auditory perception
    • H04R25/30Monitoring or testing of hearing aids, e.g. functioning, settings, battery power

Definitions

  • the present invention relates to the field of audio devices, and in particular, to a Bluetooth headset having a hearing aid and a noise reduction function and an audio device using the same.
  • the hearing aid determines the amplification factor of the currently received audio signal according to the currently received audio signal frequency and the preset hearing spectrum data corresponding to the audio signal frequency, and then according to the determined amplification factor, the currently received The audio signal is amplified so that the user can hear the sound clearly without feeling too loud.
  • the hearing aids having the above-mentioned hearing spectrum data setting function are mostly complicated in structure, high in price, and single in function, and are cumbersome to use and carry.
  • the existing hearing aid amplifies the audio signal that the user wants to hear, the existing noise and the noise signal transmitted from the outside are often amplified together to cause audible interference to the user.
  • the technical problem to be solved by the present invention is to provide a Bluetooth earphone with hearing aid and noise reduction functions for the above-mentioned many defects of the existing hearing aid.
  • a Bluetooth headset (100) includes a Bluetooth transceiver module (1) and a speaker (8), wherein the Bluetooth headset (100) further includes a multi-frequency amplifier (7) and a preset with an audio signal.
  • a storage module (6) of the plurality of frequencies corresponding to the hearing spectrum data, the Bluetooth transceiver module (1), the storage module ( 6 And the speaker (8) are electrically connected to the multi-frequency amplifier (7);
  • the Bluetooth transceiver module (1) receives an audio signal in a Bluetooth communication manner, and transmits the received audio signal to the plurality of a frequency amplifier (7);
  • the multi-frequency amplifier (7) receives the received audio based on the frequency of the received audio signal and the hearing spectrum data stored by the storage module (6) corresponding to the frequency of the received audio signal
  • the signal is amplified by a corresponding multiple and the amplified audio signal is transmitted to the speaker (8) for broadcast.
  • the Bluetooth headset (100) further includes an electrical connection to the Bluetooth transceiver Between the module (1) and the multi-frequency amplifier (7), for eliminating the Bluetooth transceiver A noise canceling module (5) for noise in the audio signal outputted by the module (1) and a noise collecting module (3) electrically connected to the noise canceling module (5) for collecting external noise.
  • the Bluetooth headset (100) further includes a microphone (2) electrically connected to the multi-frequency amplifier (7) for providing an external audio signal to the multi-frequency amplifier (7); the Bluetooth headset (100) further comprising a switch (4), the multi-frequency amplifier (7) selectively interacting with the Bluetooth via the switch (4)
  • the transceiver module (1) or the microphone (2) is electrically connected; the noise cancellation module (5) is electrically connected between the switch (4) and the multi-frequency amplifier (7).
  • the Bluetooth headset (100) further includes an interface (9) electrically connected to the storage module (6) for storing the hearing spectrum data into the storage module (6).
  • the Bluetooth transceiver module (1) is electrically connected to the storage module (6) for receiving the hearing spectrum data through Bluetooth communication, and storing the hearing spectrum data in the storage module (6) ).
  • the hearing spectrum data is a preset magnification of the audio signal respectively corresponding to the user having different frequencies.
  • the hearing spectrum data is preset by the user to be corresponding frequencies of 300 Hz, 600 Hz, 1200 Hz, Magnification of 2400 Hz, 4800 Hz audio signals.
  • the present invention also provides an audio device (300), the audio device (300) Including the above-mentioned Bluetooth headset (100) and an additional Bluetooth module (110) that establishes communication with the Bluetooth headset (100) for use in an electronic device (400) that does not have a built-in Bluetooth function. 500) acquiring an audio signal and transmitting the audio signal to the Bluetooth headset (100).
  • the method of the present invention for implementing the hearing aid and anti-noise function using the Bluetooth headset (100) comprises the following steps:
  • S2A receiving the audio signal by using the Bluetooth transceiver module (1) in Bluetooth communication mode, and transmitting the received audio signal to The noise cancellation module (5) transmits the received audio signal to the multi-frequency amplifier (7) after denoising processing;
  • another method of the present invention for implementing hearing aid and anti-noise functions using the Bluetooth headset (100) includes the following steps:
  • S2B receiving the external audio signal by using the microphone (2), and transmitting the received audio signal to The noise cancellation module (5) transmits the received audio signal to the multi-frequency amplifier (7) after denoising processing;
  • another method of the present invention for implementing hearing aid and noise immunity using the audio device (300) includes the following steps:
  • S2C using the additional Bluetooth module (110) from an electronic device without built-in Bluetooth function (400, 500) acquiring an audio signal, and transmitting the audio signal to the bluetooth headset (100); receiving the audio signal by using the Bluetooth transceiver module (1) in a Bluetooth communication manner, and transmitting the received audio signal To the noise cancellation module (5), after the denoising process, the received audio signal is transmitted to the multi-frequency amplifier (7);
  • the step S1 includes:
  • Audio signals having different frequencies are sequentially played as a hearing test signal according to a frequency from low to high, and the user listens to the hearing test signal through the Bluetooth headset (100) when the intelligent electronic device (200) Each time an audio signal having a specific frequency is played, the user adjusts the volume of the smart electronic device (200) until it feels the clearest and most comfortable to hear;
  • the smart electronic device (200) The magnification at which the audio signal having the specific frequency which is the clearest and most comfortable to hear is currently played is stored as the hearing spectrum data corresponding to the audio signal having such a specific frequency. Via Bluetooth communication or The interface (9), the intelligent electronic device (200) transmits the hearing spectrum data to the Bluetooth headset (100) and saves it in the storage module (6).
  • FIG. 1 is a functional block diagram of a Bluetooth headset provided by a preferred embodiment of the present invention.
  • FIG 2 is a schematic diagram of the operation of the Bluetooth headset shown in Figure 1 when setting the hearing spectrum data.
  • Figure 3 is a schematic diagram of the operation of the Bluetooth headset shown in Figure 1 when used as a headset.
  • Figure 4 is a schematic diagram showing the operation of the first embodiment of the Bluetooth headset shown in Figure 1 as a hearing aid.
  • Figure 5 is a schematic diagram showing the operation of the second embodiment of the Bluetooth headset shown in Figure 1 as a hearing aid.
  • FIG. 6 is a schematic diagram of the operation of an audio device for an entertainment device according to a preferred embodiment of the present invention.
  • FIG. 7 is a schematic diagram of the operation of an audio device for a fixed telephone according to a preferred embodiment of the present invention.
  • a preferred embodiment of the present invention provides a Bluetooth headset 100.
  • the Bluetooth headset 100 Can be used in accordance with traditional methods, from Bluetooth-enabled electronic devices (such as mobile phones, personal computers, laptops, tablets, multimedia players, etc.) Receiving a Bluetooth signal and converting the Bluetooth signal into an audio signal for playback, the user can pre-set the magnification that is most suitable for himself by software.
  • the Bluetooth headset 100 It is also possible to use a hearing impaired person as a hearing aid to amplify an external sound such as a voice by an appropriate multiple.
  • the Bluetooth headset 100 includes a Bluetooth transceiver module 1, a microphone 2, a noise collection module 3, and a switch 4 , noise cancellation module 5, memory module 6, multi-frequency amplifier 7, speaker 8 and interface 9 .
  • Bluetooth transceiver module 1 It can be an existing Bluetooth signal transceiver, such as a Bluetooth antenna module, for transmitting and receiving Bluetooth signals.
  • the switch 4 can be a single pole double throw switch, and the Bluetooth transceiver module 1 and the microphone 2 both pass the switch 4 Connected to the noise cancellation module 5, the Bluetooth transceiver module 1 or the microphone 2 can be selectively electrically connected to the noise cancellation module 5 by operating the switch 4, thereby respectively making the Bluetooth headset 100 Works in headset mode and hearing aid mode.
  • the noise cancellation module 5 may include a noise reduction processor (not shown) and a noise cancellation circuit (not shown) for the slave transceiver module 1 Or the audio signal received by the microphone 2 is denoised.
  • the noise reduction processor can discern the noise signal mixed in the received audio signal (for example, a noise signal due to voltage or current instability), and generate a denoising phase opposite to the phase of the noise signal. The signal is superimposed on the received audio signal by a noise cancellation circuit to remove the mixed noise signal.
  • Noise collection module 3 may be another microphone or other sound signal collecting device, and is electrically connected to the noise eliminating module 5 for collecting external noise signals and transmitting external noise signals to the noise canceling module 5 .
  • Noise cancellation module 5 The denoising signal opposite to the phase of the external noise signal may also be superimposed on the received audio signal to eliminate interference of the external noise signal on the received audio signal.
  • the noise cancellation module 5 The interference of the internal noise (ie, the noise of the received audio signal itself) and the external noise (ie, the noise from the outside) on the received audio signal can be eliminated at the same time.
  • the noise canceling module 5 can transmit an audio signal that eliminates internal noise and external noise interference to the multi-frequency amplifier 7
  • the multi-frequency amplifier 7 performs a certain multiple of amplification and then transmits it to the speaker 8 for playback.
  • the storage module 6 may be an existing data storage device electrically connected to the multi-frequency amplifier 7 and stored therein for determining the multi-frequency amplifier 7 A specific multiple of the hearing spectrum data that amplifies the audio signal transmitted from the noise cancellation module 5.
  • the so-called hearing spectrum data refers to preset magnifications corresponding to audio signals having different frequencies, respectively.
  • the user of the Bluetooth headset 100 can preset the hearing spectrum data that is most suitable for himself and store it in the storage module 6 Medium.
  • the user can control the intelligent electronic device through the existing hearing test software installed in the smart electronic device 200 (for example, a personal computer, a notebook computer, a tablet computer, a smart phone, etc.).
  • the smart electronic device 200 Plays out audio signals with different frequencies in sequence as a hearing test signal.
  • the user uses the smart electronic device 200 to play the frequency 300 Hz in order from low to high. 600 Hz, 1200 Hz, 2400 Hz, 4800 Hz
  • the audio signal of course, in other embodiments, these frequency values can also be changed according to specific requirements.
  • the user controls the smart electronic device 200 to adjust the volume through the hearing test software, and the smart electronic device 200
  • the magnification of the audio signal with this particular frequency is continuously adjusted until it feels the clearest and most comfortable.
  • the user can pass the smart electronic device 200 through the hearing test software.
  • the magnification at which the audio signal having such a specific frequency is currently played is stored as the hearing spectrum data corresponding to the audio signal having such a specific frequency.
  • the hearing spectrum data set by the user is respectively corresponding to the above frequency. Hearing spectrum data for audio signals at 300 Hz, 600 Hz, 1200 Hz, 2400 Hz, 4800 Hz.
  • the Bluetooth headset 100 further includes an interface 9 electrically connected to the storage module 6, and the interface 9 It can be an existing data interface such as a USB interface for data transmission. After the user sets the hearing spectrum data according to the above method, it can pass the existing wired transmission method (such as USB).
  • the transmission method connects the above-mentioned intelligent electronic device 200 storing the hearing spectrum data with the interface 9 and passes through the intelligent electronic device 200.
  • the operation interface inputs an operation instruction to save the hearing spectrum data to the storage module 6.
  • the Bluetooth transceiver module 1 in this embodiment is also connected to the storage module 6 Electrically connected, the hearing spectrum data can also be transmitted from the smart electronic device 200 to the Bluetooth transceiver module 1 via the existing Bluetooth communication method, and then transmitted from the Bluetooth transceiver module 1 to the storage module 6 Save it.
  • the hearing spectrum data can be stored in the memory module 6, when the multi-frequency amplifier 7 receives the audio signal from the noise cancellation module 5, it can be based on the memory module 6
  • the stored hearing spectrum data corresponding to the frequency of the received audio signal is amplified by a certain multiple of the received audio signal, and then broadcasted through the speaker 8 to allow the user to pass the speaker 8 Hear the sound with his own preset magnification. In this way, even if the user is a hearing impaired person, a clear and comfortable listening effect can be obtained.
  • Bluetooth headset 100 when the Bluetooth headset 100 is used as a headset, the user first follows the above method in the storage module 6 The hearing spectrum data suitable for oneself is stored therein, and then the switch 4 is operated to establish an electrical connection between the Bluetooth transceiver module 1 and the noise cancellation module 5.
  • Bluetooth transceiver module 1 and one with Bluetooth Electronic device 210 eg, cell phone, personal computer, laptop, tablet, multimedia player, etc.
  • Bluetooth communication When the audio file is played, the played audio signal can be transmitted to the Bluetooth transceiver module 1 by Bluetooth communication.
  • Bluetooth transceiver module 1 transmits the audio signal to the noise cancellation module via the switch 4
  • the noise canceling module 5 performs denoising processing on the audio signal according to the above method to eliminate interference of internal noise and external noise on the audio signal.
  • the denoised audio signal is transmitted to the multi-frequency amplifier 7 , multi-frequency amplifier 7
  • the received audio signal is amplified by a certain multiple, and then broadcasted through the speaker 8 to enable the user to pass the speaker 8 Hear the sound with his own preset magnification. In this way, the user can listen to the audio file played by the electronic device 210 through the Bluetooth headset 100 at a preset magnification.
  • the Bluetooth headset 100 is a first embodiment of a hearing aid, and the microphone of the Bluetooth headset 100 is used.
  • the user first stores the hearing spectrum data suitable for himself in the storage module 6 according to the above method, and then operates the switch 4 in the microphone 2 and the noise canceling module 5 Establish an electrical connection between them.
  • the microphone 2 can collect the external sound signal that the user wants to listen to (such as the voice spoken by the other party when talking with others), and convert the collected sound signal into an audio signal through the switch 4 Transmitting the audio signal to the noise cancellation module 5, the noise cancellation module 5
  • the audio signal is denoised according to the above method to eliminate interference of internal noise and external noise on the audio signal.
  • the denoised audio signal is transmitted to the multi-frequency amplifier 7 and the multi-frequency amplifier 7 is based on the memory module 6
  • the stored hearing spectrum data corresponding to the frequency of the received audio signal is amplified by a certain multiple of the received audio signal, and then broadcasted through the speaker 8 to allow the user to pass the speaker 8 Hear the sound with his own preset magnification.
  • the user can use the Bluetooth headset 100 to amplify the external sound signal that he or she wants to listen to by a preset multiple, thereby obtaining an ideal listening effect.
  • the Bluetooth headset 100 is used as a second embodiment of the hearing aid, and an external mobile phone is used.
  • the microphone captures the external sound signal that the user wants to listen to.
  • the user stores the hearing spectrum data suitable for himself in the storage module 6 according to the above method, and then operates the switch 4 in the Bluetooth transceiver module 1 Establish an electrical connection with the noise cancellation module 5.
  • the user places a Bluetooth enabled mobile phone 220 next to the external sound signal that the user wants to listen to, and uses the application software to turn the mobile phone 220.
  • the operation mode adjusts the external sound signal by using the microphone of the mobile phone 220, and transmits the collected external sound signal to the Bluetooth transceiver module 1 of the Bluetooth headset 100 through Bluetooth communication.
  • the audio signal is transmitted to the noise cancellation module 5 via the switch 4, and the noise cancellation module 5
  • the audio signal is denoised according to the above method to eliminate interference of internal noise and external noise on the audio signal.
  • the denoised audio signal is transmitted to the multi-frequency amplifier 7 and the multi-frequency amplifier 7 is based on the memory module 6
  • the stored hearing spectrum data corresponding to the frequency of the received audio signal is amplified by a certain multiple of the received audio signal, and then broadcasted through the speaker 8 to allow the user to pass the speaker 8 Hear the sound with his own preset magnification. In this way, the user can use the Bluetooth headset 100 to amplify the external sound signal that he or she wants to listen to by a preset multiple, thereby obtaining an ideal listening effect.
  • Bluetooth headset 100 provided by the present invention Integrating the functions of the hearing aids facilitates simplifying the hardware structure of the hearing aid, reducing the overall production cost, and increasing the interest of use.
  • the Bluetooth headset 100 It also features noise reduction, which provides better audio playback than existing headphones and hearing aids when used as a headset or hearing aid.
  • the present invention also provides an audio device 300.
  • the audio device 300 includes the above-mentioned Bluetooth headset 100 and an additional Bluetooth module 110 having a Bluetooth communication connection with the Bluetooth headset 100.
  • the additional Bluetooth module 110 It can be various existing Bluetooth communication modules, and can perform short-range wireless communication with the Bluetooth transceiver module 1 in the Bluetooth headset 100 using various existing Bluetooth communication means.
  • the additional Bluetooth module (110) is used for never
  • the Bluetooth-enabled electronic device (400, 500) acquires an audio signal and transmits the audio signal to the Bluetooth headset (100).
  • FIG. 6 is a schematic diagram of the operation of the audio device 300 for an entertainment device 400.
  • the entertainment device 400 can be a television set, An electronic device that can play audio signals but does not have a built-in Bluetooth module, such as a DVD player or an audio amplifier.
  • the additional Bluetooth module 110 and the entertainment device 400 The electrical connection is established in a known manner (for example, through an existing audio interface), the audio signal played by the entertainment device 400 is obtained, and the audio signal is transmitted to the Bluetooth transceiver module by Bluetooth communication. .
  • the Bluetooth headset 100 can be used in accordance with the above method, so that the Bluetooth headset 100 can be used as an audio playback device of the entertainment device 400.
  • FIG. 7 is a schematic diagram of the operation of the audio device 300 for a fixed telephone 500.
  • the additional Bluetooth module 110 and the fixed telephone 500 establishes an electrical connection according to a known manner (for example, through an existing audio interface), obtains an audio signal transmitted by the fixed telephone 500, and transmits the audio signal to the Bluetooth transceiver module through Bluetooth communication. 1 .
  • the Bluetooth headset 100 can be used as described above.
  • the microphone 2 can also be used to input the user's voice and transmit the user's voice to the fixed telephone 500 in an existing manner. , sent out through the fixed telephone network.
  • the Bluetooth headset 100 can be used as a wireless handset and microphone for the fixed telephone 500.
  • the audio device 300 can be used in conjunction with a variety of existing electronic devices and communication devices.
  • the audio device The Bluetooth Headset 100 in the 300 can perform hearing aid, noise reduction and hearing protection functions as described above, further expanding the use of the Bluetooth headset 100.

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  • Neurosurgery (AREA)
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  • Engineering & Computer Science (AREA)
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Description

蓝牙耳机助听及抗噪方法和装置Bluetooth headset hearing aid and anti-noise method and device 技术领域 Technical field

本发明涉及音频设备领域,尤其涉及一种具有助听和降噪功能的蓝牙耳机及使用该蓝牙耳机的音频装置。  The present invention relates to the field of audio devices, and in particular, to a Bluetooth headset having a hearing aid and a noise reduction function and an audio device using the same.

背景技术 Background technique

很多听力受损者在生活中需要使用助听器。现今的助听器大多可以根据用户的听力受损情况设置听力频谱数据,也就是对应不同频率的音频信号分别设置适当的放大倍数。使用时,助听器根据当前接收到的音频信号频率和预设的与该音频信号频率对应的听力频谱数据确定对当前接收到的音频信号的放大倍数,然后依照所确定的放大倍数对当前接收到的音频信号进行放大,使用户既能清楚地听到声音,而又不会感觉声音太大。 Many hearing impaired people need hearing aids in their lives. Most of today's hearing aids can set the hearing spectrum data according to the user's hearing impairment, that is, the appropriate amplification factor is set for the audio signals of different frequencies. In use, the hearing aid determines the amplification factor of the currently received audio signal according to the currently received audio signal frequency and the preset hearing spectrum data corresponding to the audio signal frequency, and then according to the determined amplification factor, the currently received The audio signal is amplified so that the user can hear the sound clearly without feeling too loud.

然而,具有上述听力频谱数据设置功能的助听器大多结构复杂,价格较高,而且功能单一,使用及携带都较为麻烦。另外,现有的助听器在放大用户所要听到的音频信号时,也经常会将混杂在其中的杂讯以及外界传来的噪声信号一起放大,给用户造成听觉上的干扰。 However, the hearing aids having the above-mentioned hearing spectrum data setting function are mostly complicated in structure, high in price, and single in function, and are cumbersome to use and carry. In addition, when the existing hearing aid amplifies the audio signal that the user wants to hear, the existing noise and the noise signal transmitted from the outside are often amplified together to cause audible interference to the user.

发明内容 Summary of the invention

本发明要解决的技术问题在于,针对现有助听器的上述诸多缺陷,提供一种具有助听和降噪功能的蓝牙耳机。 The technical problem to be solved by the present invention is to provide a Bluetooth earphone with hearing aid and noise reduction functions for the above-mentioned many defects of the existing hearing aid.

本发明解决其技术问题所采用的技术方案是: The technical solution adopted by the present invention to solve the technical problem thereof is:

提供 一种蓝牙耳机(100),包括蓝牙收发模块(1)以及扬声器(8),其特征在于:所述蓝牙耳机(100)还包括多频放大器(7)及存储有预设的与音频信号的多个频率分别对应的听力频谱数据的存储模块(6),所述蓝牙收发模块(1)、所述存储模块( 6 )及所述扬声器(8)均与所述多频放大器(7)电性连接;所述蓝牙收发模块(1)以蓝牙通信方式接收音频信号,并将接收到的音频信号传输到所述多频放大器(7);所述多频放大器(7)根据接收到的音频信号的频率及所述存储模块(6)存储的与接收到的音频信号频率相对应的听力频谱数据将接收到的音频信号放大相应的倍数,并将放大后的音频信号传输到所述扬声器(8)播出。 provide A Bluetooth headset (100) includes a Bluetooth transceiver module (1) and a speaker (8), wherein the Bluetooth headset (100) further includes a multi-frequency amplifier (7) and a preset with an audio signal. a storage module (6) of the plurality of frequencies corresponding to the hearing spectrum data, the Bluetooth transceiver module (1), the storage module ( 6 And the speaker (8) are electrically connected to the multi-frequency amplifier (7); the Bluetooth transceiver module (1) receives an audio signal in a Bluetooth communication manner, and transmits the received audio signal to the plurality of a frequency amplifier (7); the multi-frequency amplifier (7) receives the received audio based on the frequency of the received audio signal and the hearing spectrum data stored by the storage module (6) corresponding to the frequency of the received audio signal The signal is amplified by a corresponding multiple and the amplified audio signal is transmitted to the speaker (8) for broadcast.

优选地,所述蓝牙耳机(100)还包括电性连接于所述蓝牙 收发 模块(1)与所述多频放大器(7)之间,用于消除所述蓝牙 收发 模块(1)输出的音频信号中的噪声的噪声消除模块(5)以及与所述噪声消除模块(5)电性连接,用于收集外界噪声的噪声收集模块(3)。 Preferably, the Bluetooth headset (100) further includes an electrical connection to the Bluetooth transceiver Between the module (1) and the multi-frequency amplifier (7), for eliminating the Bluetooth transceiver A noise canceling module (5) for noise in the audio signal outputted by the module (1) and a noise collecting module (3) electrically connected to the noise canceling module (5) for collecting external noise.

优选地,所述蓝牙耳机(100)还包括与所述多频放大器(7)电性连接,用于向所述多频放大器(7)提供外界音频信号的麦克风(2);所述蓝牙耳机(100)还包括切换开关(4),所述多频放大器(7)通过所述切换开关(4)可选择地与所述蓝牙 收发 模块(1)或所述麦克风(2)电性连接;所述噪声消除模块(5)电性连接于所述切换开关(4)与所述多频放大器(7)之间 。 Preferably, the Bluetooth headset (100) further includes a microphone (2) electrically connected to the multi-frequency amplifier (7) for providing an external audio signal to the multi-frequency amplifier (7); the Bluetooth headset (100) further comprising a switch (4), the multi-frequency amplifier (7) selectively interacting with the Bluetooth via the switch (4) The transceiver module (1) or the microphone (2) is electrically connected; the noise cancellation module (5) is electrically connected between the switch (4) and the multi-frequency amplifier (7).

优选地,所述蓝牙耳机(100)还包括与所述存储模块(6)电性连接,用于向所述存储模块(6)中存入所述听力频谱数据的接口(9)。 Preferably, the Bluetooth headset (100) further includes an interface (9) electrically connected to the storage module (6) for storing the hearing spectrum data into the storage module (6).

优选地,所述蓝牙收发模块(1)与所述存储模块(6)电性连接,用于通过蓝牙通信接收所述听力频谱数据,并将所述听力频谱数据存入所述存储模块(6)。 Preferably, the Bluetooth transceiver module (1) is electrically connected to the storage module (6) for receiving the hearing spectrum data through Bluetooth communication, and storing the hearing spectrum data in the storage module (6) ).

优选地,所述听力频谱数据为用户预设的分别对应具有不同频率的音频信号的放大倍数。 Preferably, the hearing spectrum data is a preset magnification of the audio signal respectively corresponding to the user having different frequencies.

优选地,所述听力频谱数据为用户预设的分别对应频率为 300 Hz 、 600 Hz 、 1200 Hz 、 2400 Hz 、 4800 Hz 的音频信号的放大倍数。 Preferably, the hearing spectrum data is preset by the user to be corresponding frequencies of 300 Hz, 600 Hz, 1200 Hz, Magnification of 2400 Hz, 4800 Hz audio signals.

本发明还提供一种音频装置 (300) ,该音频装置 (300) 包括上述的蓝牙耳机(100)以及与该蓝牙耳机(100)建立通信的附加蓝牙模块(110),该附加蓝牙模块(110)用于从没有 内置 蓝牙功能的电子 设备(400 、 500)获取音频信号,并将该音频信号传输到该蓝牙耳机(100)。 The present invention also provides an audio device (300), the audio device (300) Including the above-mentioned Bluetooth headset (100) and an additional Bluetooth module (110) that establishes communication with the Bluetooth headset (100) for use in an electronic device (400) that does not have a built-in Bluetooth function. 500) acquiring an audio signal and transmitting the audio signal to the Bluetooth headset (100).

优选地,本发明的 利用 所述 蓝牙耳机(100)实现助听和抗噪功能的方法包括以下步骤: Preferably, the method of the present invention for implementing the hearing aid and anti-noise function using the Bluetooth headset (100) comprises the following steps:

S1 :设置听力频谱数据并保存在所述存储模块(6)中; S1: setting hearing spectrum data and saving in the storage module (6);

S2A :利用所述蓝牙收发模块(1)以蓝牙通信方式接收音频信号,并将接收到的音频信号传输到 所述噪声消除模块(5) , 经过除噪处理后 将接收到的音频信号传输到所述多频放大器(7); S2A: receiving the audio signal by using the Bluetooth transceiver module (1) in Bluetooth communication mode, and transmitting the received audio signal to The noise cancellation module (5) transmits the received audio signal to the multi-frequency amplifier (7) after denoising processing;

S3 :利用所述多频放大器(7)根据接收到的音频信号的频率及所述存储模块(6)存储的与接收到的音频信号频率相对应的听力频谱数据将接收到的音频信号放大相应的倍数,并将放大后的音频信号传输到所述扬声器(8)播出。 S3 Using the multi-frequency amplifier (7) to amplify the received audio signal according to the frequency of the received audio signal and the hearing spectrum data stored by the storage module (6) corresponding to the frequency of the received audio signal A multiple and transmitting the amplified audio signal to the speaker (8) for broadcast.

优选地,本发明的 利用 所述 蓝牙耳机(100)实现助听和抗噪功能的另一方法包括以下步骤: Preferably, another method of the present invention for implementing hearing aid and anti-noise functions using the Bluetooth headset (100) includes the following steps:

S1 :设置听力频谱数据并保存在所述存储模块(6)中; S1: setting hearing spectrum data and saving in the storage module (6);

S2B :利用所述 麦克风(2) 接收 外界音频信号 ,并将接收到的音频信号传输到 所述噪声消除模块(5),经过除噪处理后将接收到的音频信号传输到所述多频放大器(7); S2B: receiving the external audio signal by using the microphone (2), and transmitting the received audio signal to The noise cancellation module (5) transmits the received audio signal to the multi-frequency amplifier (7) after denoising processing;

S3 :利用所述多频放大器(7)根据接收到的音频信号的频率及所述存储模块(6)存储的与接收到的音频信号频率相对应的听力频谱数据将接收到的音频信号放大相应的倍数,并将放大后的音频信号 传输到所述扬声器(8)播出。 S3 Using the multi-frequency amplifier (7) to amplify the received audio signal according to the frequency of the received audio signal and the hearing spectrum data stored by the storage module (6) corresponding to the frequency of the received audio signal Multiple and will amplify the audio signal Transfer to the speaker (8) for broadcast.

优选地,本发明的 利用 所述 音频装置(300)实现助听和抗噪功能的另一方法包括以下步骤: Preferably, another method of the present invention for implementing hearing aid and noise immunity using the audio device (300) includes the following steps:

S1 :设置听力频谱数据并保存在所述存储模块(6)中; S1: setting hearing spectrum data and saving in the storage module (6);

S2C :利用所述 附加蓝牙模块(110)从没有 内置 蓝牙功能的电子 设备(400 、 500)获取音频信号,并将该音频信号传输到该蓝牙耳机(100) ;利用所述蓝牙收发模块(1)以蓝牙通信方式接收音频信号,并将接收到的音频信号传输 到所述噪声消除模块(5),经过除噪处理后将接收到的音频信号传输到所述多频放大器(7); S2C: using the additional Bluetooth module (110) from an electronic device without built-in Bluetooth function (400, 500) acquiring an audio signal, and transmitting the audio signal to the bluetooth headset (100); receiving the audio signal by using the Bluetooth transceiver module (1) in a Bluetooth communication manner, and transmitting the received audio signal To the noise cancellation module (5), after the denoising process, the received audio signal is transmitted to the multi-frequency amplifier (7);

S3 :利用所述多频放大器(7)根据接 收到的音频信号的频率及所述存储模块(6)存储的与接收到的音频信号频率相对应的听力频谱数据将接收到的音频信号放大相应的倍数,并将放大后的音频信号传输到所述扬声器(8)播出。 S3: using the multi-frequency amplifier (7) according to the connection Receiving the frequency of the audio signal and the audio spectrum data stored by the storage module (6) corresponding to the frequency of the received audio signal, amplifying the received audio signal by a corresponding multiple, and transmitting the amplified audio signal to The speaker (8) is broadcast.

优选地, 所述步骤 S1 包括: Preferably, the step S1 includes:

使用 智能电子设备(200) ,依照频率从低到高的顺序依次播放具有不同频率的音频信号作为听力测试信号,用户通过蓝牙耳机(100)收听听力测试信号,当 所述智能电子设备(200) 每次播放出具有一种特定频率的音频信号时,用户都调节 所述智能电子设备(200) 的音量,直到听上去感觉最为清晰且最为舒适为止; Use Smart Electronics (200) Audio signals having different frequencies are sequentially played as a hearing test signal according to a frequency from low to high, and the user listens to the hearing test signal through the Bluetooth headset (100) when the intelligent electronic device (200) Each time an audio signal having a specific frequency is played, the user adjusts the volume of the smart electronic device (200) until it feels the clearest and most comfortable to hear;

将 所述智能电子设备(200) 当前播放具有这种听上去最为清晰且最为舒适的特定频率的音频信号时的放大倍数存储下来,作为与具有这种特定频率的音频信号相对应的听力频谱数据。通过 蓝牙通信方式或 接口(9), 所述智能电子设备(200) 将 所述 听力频谱数据传输到蓝牙耳机(100)并保存在存储模块(6)中 。 The smart electronic device (200) The magnification at which the audio signal having the specific frequency which is the clearest and most comfortable to hear is currently played is stored as the hearing spectrum data corresponding to the audio signal having such a specific frequency. Via Bluetooth communication or The interface (9), the intelligent electronic device (200) transmits the hearing spectrum data to the Bluetooth headset (100) and saves it in the storage module (6).

附图说明 DRAWINGS

为了更清楚地说明本发明实施例的技术方案,下面将对实施例描述中所需要使用的附图作简单的介绍,显而易见,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图,附图中: In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings which are used in the description of the embodiments will be briefly described. It is obvious that the drawings in the following description are only some embodiments of the present invention. One of ordinary skill in the art can also obtain other drawings based on these drawings without paying any creative effort.

图 1 是本发明较佳实施例提供的蓝牙耳机的功能模块方框图。 1 is a functional block diagram of a Bluetooth headset provided by a preferred embodiment of the present invention.

图 2 是图 1 所示的蓝牙耳机设置听力频谱数据时的工作原理图。 Figure 2 is a schematic diagram of the operation of the Bluetooth headset shown in Figure 1 when setting the hearing spectrum data.

图 3 是图 1 所示的蓝牙耳机用作耳机使用时的工作原理图。 Figure 3 is a schematic diagram of the operation of the Bluetooth headset shown in Figure 1 when used as a headset.

图 4 是 图 1 所示的蓝牙耳机用作助听器的第一实施例的工作原理图。 Figure 4 is a schematic diagram showing the operation of the first embodiment of the Bluetooth headset shown in Figure 1 as a hearing aid.

图 5 是 图 1 所示的蓝牙耳机用作助听器的第二实施例的工作原理图。 Figure 5 is a schematic diagram showing the operation of the second embodiment of the Bluetooth headset shown in Figure 1 as a hearing aid.

图 6 是本发明较佳实施例提供的音频装置用于娱乐设备的工作原理图。 FIG. 6 is a schematic diagram of the operation of an audio device for an entertainment device according to a preferred embodiment of the present invention.

图 7 是本发明较佳实施例提供的音频装置用于固定电话的工作原理图。 FIG. 7 is a schematic diagram of the operation of an audio device for a fixed telephone according to a preferred embodiment of the present invention.

具体实施方式 Detailed ways

为了使本发明的目的、技术方案及优点更加清楚明白,下文将要描述的各种实施例将要参考相应的附图,这些附图构成了实施例的一部分,其中描述了实现本发明可能采用的各种实施例。应明白,还可使用其他的实施例,或者对本文列举的实施例进行结构和功能上的修改,而不会脱离本发明的范围和实质。 In order to make the objects, the technical solutions and the advantages of the present invention more comprehensible, the various embodiments of the present invention will be described with reference to the accompanying drawings. An embodiment. It is understood that other embodiments may be utilized, and structural and functional modifications may be made to the embodiments described herein without departing from the scope and spirit of the invention.

如图 1 所示,本发明的一个较佳实施例提供一种蓝牙耳机 100 。该蓝牙耳机 100 可以依照传统的使用方法,从具有蓝牙功能的电子设备 (例如手机、个人电脑、笔记本电脑、平板电脑、多媒体播放器等) 接收蓝牙信号,并将蓝牙信号转换成音频信号进行播放,用户可以用通过软件预先设置最适合自己的放大倍数。另外,该蓝牙耳机 100 也可以让听力受损者作为助听器使用,用来将外界的声音例如说话声放大适当的倍数。 As shown in FIG. 1, a preferred embodiment of the present invention provides a Bluetooth headset 100. The Bluetooth headset 100 Can be used in accordance with traditional methods, from Bluetooth-enabled electronic devices (such as mobile phones, personal computers, laptops, tablets, multimedia players, etc.) Receiving a Bluetooth signal and converting the Bluetooth signal into an audio signal for playback, the user can pre-set the magnification that is most suitable for himself by software. In addition, the Bluetooth headset 100 It is also possible to use a hearing impaired person as a hearing aid to amplify an external sound such as a voice by an appropriate multiple.

具体地,该蓝牙耳机 100 包括蓝牙收发模块 1 、麦克风 2 、噪声收集模块 3 、切换开关 4 、噪声消除模块 5 、存储模块 6 、多频放大器 7 、扬声器 8 及接口 9 。其中蓝牙收发模块 1 可以是现有的蓝牙信号收发装置,例如蓝牙天线模组,用于收发蓝牙信号。切换开关 4 可以是单刀双掷开关,蓝牙收发模块 1 与麦克风 2 均通过切换开关 4 连接到噪声消除模块 5 ,通过操作切换开关 4 可以选择性地将蓝牙收发模块 1 或麦克风 2 与噪声消除模块 5 建立电性连接,从而分别使蓝牙耳机 100 在耳机模式与助听器模式下工作。 Specifically, the Bluetooth headset 100 includes a Bluetooth transceiver module 1, a microphone 2, a noise collection module 3, and a switch 4 , noise cancellation module 5, memory module 6, multi-frequency amplifier 7, speaker 8 and interface 9 . Bluetooth transceiver module 1 It can be an existing Bluetooth signal transceiver, such as a Bluetooth antenna module, for transmitting and receiving Bluetooth signals. The switch 4 can be a single pole double throw switch, and the Bluetooth transceiver module 1 and the microphone 2 both pass the switch 4 Connected to the noise cancellation module 5, the Bluetooth transceiver module 1 or the microphone 2 can be selectively electrically connected to the noise cancellation module 5 by operating the switch 4, thereby respectively making the Bluetooth headset 100 Works in headset mode and hearing aid mode.

噪声消除模块 5 可以包含降噪处理器(图未示)与噪声消除电路(图未示),用于对从蓝牙收发模块 1 或麦克风 2 接收到的音频信号进行除噪处理。当噪声消除模块 5 通过切换开关 4 从蓝牙收发模块 1 或麦克风 2 接收到音频信号时,降噪处理器可以辨别出所接收到的音频信号中混杂的噪声信号(例如因为电压或电流不稳定而造成的噪声信号),并产生与该等噪声信号相位相反的除噪信号,通过噪声消除电路将除噪信号叠加到所接收到的音频信号中以除去其中混杂的噪声信号。噪声收集模块 3 可以是另一个麦克风或其他声音信号收集装置,与噪声消除模块 5 电性连接,用于收集外界的噪声信号,并将外界的噪声信号传输到噪声消除模块 5 。噪声消除模块 5 也可以将与外界噪声信号相位相反的除噪信号叠加在所接收到的音频信号上,用以消除外界噪声信号对所接收到的音频信号的干扰。这样,噪声消除模块 5 可以同时消除内部噪声(即所接收到的音频信号自身混杂的噪声)与外部噪声(即外界传来的噪声)对所接收到的音频信号的干扰。 The noise cancellation module 5 may include a noise reduction processor (not shown) and a noise cancellation circuit (not shown) for the slave transceiver module 1 Or the audio signal received by the microphone 2 is denoised. When the noise cancellation module 5 is switched from the Bluetooth transceiver module 1 or the microphone 2 Upon receiving the audio signal, the noise reduction processor can discern the noise signal mixed in the received audio signal (for example, a noise signal due to voltage or current instability), and generate a denoising phase opposite to the phase of the noise signal. The signal is superimposed on the received audio signal by a noise cancellation circuit to remove the mixed noise signal. Noise collection module 3 may be another microphone or other sound signal collecting device, and is electrically connected to the noise eliminating module 5 for collecting external noise signals and transmitting external noise signals to the noise canceling module 5 . Noise cancellation module 5 The denoising signal opposite to the phase of the external noise signal may also be superimposed on the received audio signal to eliminate interference of the external noise signal on the received audio signal. Thus, the noise cancellation module 5 The interference of the internal noise (ie, the noise of the received audio signal itself) and the external noise (ie, the noise from the outside) on the received audio signal can be eliminated at the same time.

经过上述的除噪处理后,噪声消除模块 5 即可将消除了内部噪声和外部噪声干扰的音频信号传输到多频放大器 7 ,由多频放大器 7 进行一定倍数的放大,再传输到扬声器 8 进行播放。 After the above-described denoising processing, the noise canceling module 5 can transmit an audio signal that eliminates internal noise and external noise interference to the multi-frequency amplifier 7 The multi-frequency amplifier 7 performs a certain multiple of amplification and then transmits it to the speaker 8 for playback.

存储模块 6 可以是现有的数据存储设备,与多频放大器 7 电性连接,其中存储有用于确定多频放大器 7 对从噪声消除模块 5 传输来的音频信号进行放大的具体倍数的听力频谱数据。所谓听力频谱数据指的是预设的分别对应具有不同频率的音频信号的放大倍数。 The storage module 6 may be an existing data storage device electrically connected to the multi-frequency amplifier 7 and stored therein for determining the multi-frequency amplifier 7 A specific multiple of the hearing spectrum data that amplifies the audio signal transmitted from the noise cancellation module 5. The so-called hearing spectrum data refers to preset magnifications corresponding to audio signals having different frequencies, respectively.

请参阅图 2 , 蓝牙耳机 100 的用户可以预先设置最适合自己的听力频谱数据,并存储到存储模块 6 中。设置听力频谱数据时,用户可以通过智能电子设备 200 (例如个人电脑、 笔记本电脑、 平板电脑、智能手机等)中安装的现有听力测试软件控制该智能电子设备 200 依次播放出具有不同频率的音频信号作为听力测试信号。本实施例中,用户使用该智能电子设备 200 依照频率从低到高的顺序依次播放出频率为 300 Hz 、 600 Hz 、 1200 Hz 、 2400 Hz 、 4800 Hz 的音频信号,当然在其他实施例中这些频率数值也可以根据具体要求进行改变。当该智能电子设备 200 每次播放出具有一种特定频率的音频信号时,用户都通过听力测试软件控制该智能电子设备 200 调节音量,对该智能电子设备 200 播放具有这种特定频率的音频信号时的放大倍数进行持续的调节,直到自己听上去感觉最为清晰且最为舒适为止。此时,用户即可通过听力测试软件将该智能电子设备 200 当前播放具有这种特定频率的音频信号时的放大倍数存储下来,作为与具有这种特定频率的音频信号相对应的听力频谱数据。这样,用户即可自行设置分别对应多个频率的音频信号的听力频谱数据。本实施例中,用户设置的听力频谱数据即为分别对应上述的频率为 300 Hz 、 600 Hz 、 1200 Hz 、 2400 Hz 、 4800 Hz 的音频信号的听力频谱数据。 Referring to FIG. 2, the user of the Bluetooth headset 100 can preset the hearing spectrum data that is most suitable for himself and store it in the storage module 6 Medium. When setting the hearing spectrum data, the user can control the intelligent electronic device through the existing hearing test software installed in the smart electronic device 200 (for example, a personal computer, a notebook computer, a tablet computer, a smart phone, etc.). 200 Plays out audio signals with different frequencies in sequence as a hearing test signal. In this embodiment, the user uses the smart electronic device 200 to play the frequency 300 Hz in order from low to high. 600 Hz, 1200 Hz, 2400 Hz, 4800 Hz The audio signal, of course, in other embodiments, these frequency values can also be changed according to specific requirements. When the smart electronic device 200 Each time an audio signal having a specific frequency is played, the user controls the smart electronic device 200 to adjust the volume through the hearing test software, and the smart electronic device 200 The magnification of the audio signal with this particular frequency is continuously adjusted until it feels the clearest and most comfortable. At this point, the user can pass the smart electronic device 200 through the hearing test software. The magnification at which the audio signal having such a specific frequency is currently played is stored as the hearing spectrum data corresponding to the audio signal having such a specific frequency. In this way, the user can set the hearing spectrum data of the audio signals corresponding to the multiple frequencies. In this embodiment, the hearing spectrum data set by the user is respectively corresponding to the above frequency. Hearing spectrum data for audio signals at 300 Hz, 600 Hz, 1200 Hz, 2400 Hz, 4800 Hz.

本实施例中,蓝牙耳机 100 还包括与存储模块 6 电性连接的接口 9 ,该接口 9 可以是现有的数据接口例如 USB 接口等,用于进行数据传输。用户依照上述方法设置好听力频谱数据后,可以通过现有的有线传输方式(例如 USB 传输方式),将上述的储存了听力频谱数据的智能电子设备 200 与接口 9 连接,并通过该智能电子设备 200 的操作界面输入操作指令,将听力频谱数据保存到存储模块 6 中。另外,本实施例中的蓝牙收发模块 1 也与存储模块 6 电性连接,因此也可以通过现有的蓝牙通信方式将听力频谱数据从该智能电子设备 200 发送到蓝牙收发模块 1 ,再从蓝牙收发模块 1 传输到存储模块 6 进行保存。无论采用上述哪一种保存方法,只要存储模块 6 中保存有听力频谱数据,当多频放大器 7 从噪声消除模块 5 接收到音频信号后,即可根据存储模块 6 中存储的与接收到的音频信号的频率对应的听力频谱数据,对接收到的音频信号进行一定倍数的放大,再经由扬声器 8 播出,使用户通过扬声器 8 听到具有自己预设的放大倍数的声音。这样,即使用户是听力受损者,也可以获得清晰而舒适的收听效果。 In this embodiment, the Bluetooth headset 100 further includes an interface 9 electrically connected to the storage module 6, and the interface 9 It can be an existing data interface such as a USB interface for data transmission. After the user sets the hearing spectrum data according to the above method, it can pass the existing wired transmission method (such as USB). The transmission method) connects the above-mentioned intelligent electronic device 200 storing the hearing spectrum data with the interface 9 and passes through the intelligent electronic device 200. The operation interface inputs an operation instruction to save the hearing spectrum data to the storage module 6. In addition, the Bluetooth transceiver module 1 in this embodiment is also connected to the storage module 6 Electrically connected, the hearing spectrum data can also be transmitted from the smart electronic device 200 to the Bluetooth transceiver module 1 via the existing Bluetooth communication method, and then transmitted from the Bluetooth transceiver module 1 to the storage module 6 Save it. Regardless of which of the above preservation methods is used, as long as the hearing spectrum data is stored in the memory module 6, when the multi-frequency amplifier 7 receives the audio signal from the noise cancellation module 5, it can be based on the memory module 6 The stored hearing spectrum data corresponding to the frequency of the received audio signal is amplified by a certain multiple of the received audio signal, and then broadcasted through the speaker 8 to allow the user to pass the speaker 8 Hear the sound with his own preset magnification. In this way, even if the user is a hearing impaired person, a clear and comfortable listening effect can be obtained.

请参阅图 3 ,当蓝牙耳机 100 作为耳机使用时,用户首先依照上述方法在存储模块 6 中存入适合自己的听力频谱数据,然后操作切换开关 4 ,在蓝牙收发模块 1 与噪声消除模块 5 之间建立电性连接。蓝牙收发模块 1 与一 具有蓝牙功能的 电子设备 210 (例如手机、个人电脑、笔记本电脑、平板电脑、多媒体播放器等)建立蓝牙通信,当该电子设备 210 播放音频文件时,即可通过蓝牙通信方式将所播放的音频信号传输到蓝牙收发模块 1 。蓝牙收发模块 1 经过切换开关 4 将音频信号传输到噪声消除模块 5 ,噪声消除模块 5 依照上述方法对音频信号进行除噪处理,消除内部噪声和外部噪声对音频信号的干扰。经过除噪处理的音频信号被传输到多频放大器 7 ,多频放大器 7 根据存储模块 6 中存储的与接收到的音频信号的频率对应的听力频谱数据,对接收到的音频信号进行一定倍数的放大,再经由扬声器 8 播出,使用户通过扬声器 8 听到具有自己预设的放大倍数的声音。这样,用户即可通过蓝牙耳机 100 以预设的放大倍数收听电子设备 210 播放的音频文件。 Referring to FIG. 3, when the Bluetooth headset 100 is used as a headset, the user first follows the above method in the storage module 6 The hearing spectrum data suitable for oneself is stored therein, and then the switch 4 is operated to establish an electrical connection between the Bluetooth transceiver module 1 and the noise cancellation module 5. Bluetooth transceiver module 1 and one with Bluetooth Electronic device 210 (eg, cell phone, personal computer, laptop, tablet, multimedia player, etc.) establishes Bluetooth communication when the electronic device 210 When the audio file is played, the played audio signal can be transmitted to the Bluetooth transceiver module 1 by Bluetooth communication. Bluetooth transceiver module 1 transmits the audio signal to the noise cancellation module via the switch 4 The noise canceling module 5 performs denoising processing on the audio signal according to the above method to eliminate interference of internal noise and external noise on the audio signal. The denoised audio signal is transmitted to the multi-frequency amplifier 7 , multi-frequency amplifier 7 According to the hearing spectrum data stored in the storage module 6 corresponding to the frequency of the received audio signal, the received audio signal is amplified by a certain multiple, and then broadcasted through the speaker 8 to enable the user to pass the speaker 8 Hear the sound with his own preset magnification. In this way, the user can listen to the audio file played by the electronic device 210 through the Bluetooth headset 100 at a preset magnification.

请参阅图 4 ,蓝牙耳机 100 作为助听器的第一实施例,使用蓝牙耳机 100 的麦克风 2 采集用户想要收听的外部声音信号。用户首先依照上述方法在存储模块 6 中存入适合自己的听力频谱数据,然后操作切换开关 4 ,在麦克风 2 与噪声消除模块 5 之间建立电性连接。这样,麦克风 2 即可采集用户想要收听的外部声音信号(例如与他人交谈时对方说话的语音),将采集到的声音信号转换成音频信号,经过切换开关 4 将音频信号传输到噪声消除模块 5 ,噪声消除模块 5 依照上述方法对音频信号进行除噪处理,消除内部噪声和外部噪声对音频信号的干扰。经过除噪处理的音频信号被传输到多频放大器 7 ,多频放大器 7 根据存储模块 6 中存储的与接收到的音频信号的频率对应的听力频谱数据,对接收到的音频信号进行一定倍数的放大,再经由扬声器 8 播出,使用户通过扬声器 8 听到具有自己预设的放大倍数的声音。这样,用户即可通过蓝牙耳机 100 将自己想要收听的外部声音信号放大预设的倍数,从而获得理想的收听效果。 Referring to FIG. 4, the Bluetooth headset 100 is a first embodiment of a hearing aid, and the microphone of the Bluetooth headset 100 is used. Acquire an external sound signal that the user wants to listen to. The user first stores the hearing spectrum data suitable for himself in the storage module 6 according to the above method, and then operates the switch 4 in the microphone 2 and the noise canceling module 5 Establish an electrical connection between them. In this way, the microphone 2 can collect the external sound signal that the user wants to listen to (such as the voice spoken by the other party when talking with others), and convert the collected sound signal into an audio signal through the switch 4 Transmitting the audio signal to the noise cancellation module 5, the noise cancellation module 5 The audio signal is denoised according to the above method to eliminate interference of internal noise and external noise on the audio signal. The denoised audio signal is transmitted to the multi-frequency amplifier 7 and the multi-frequency amplifier 7 is based on the memory module 6 The stored hearing spectrum data corresponding to the frequency of the received audio signal is amplified by a certain multiple of the received audio signal, and then broadcasted through the speaker 8 to allow the user to pass the speaker 8 Hear the sound with his own preset magnification. In this way, the user can use the Bluetooth headset 100 to amplify the external sound signal that he or she wants to listen to by a preset multiple, thereby obtaining an ideal listening effect.

请参阅图 5 ,蓝牙耳机 100 作为助听器的第二实施例,使用外置的手机 220 的麦克风采集用户想要收听的外部声音信号。首先,用户依照上述方法在存储模块 6 中存入适合自己的听力频谱数据,然后操作切换开关 4 ,在在蓝牙收发模块 1 与噪声消除模块 5 之间建立电性连接。下一步,用户把一 具有蓝牙功能的 手机 220 放在用户想要收听的外部声音信号的旁边,并使用应用软件把手机 220 的操作模式调较为利用手机 220 的麦克风采集外部声音信号,通过蓝牙通信方式将所采集的外部声音信号传输到蓝牙耳机 100 的蓝牙收发模块 1 。蓝牙收发模块 1 经过切换开关 4 将音频信号传输到噪声消除模块 5 ,噪声消除模块 5 依照上述方法对音频信号进行除噪处理,消除内部噪声和外部噪声对音频信号的干扰。经过除噪处理的音频信号被传输到多频放大器 7 ,多频放大器 7 根据存储模块 6 中存储的与接收到的音频信号的频率对应的听力频谱数据,对接收到的音频信号进行一定倍数的放大,再经由扬声器 8 播出,使用户通过扬声器 8 听到具有自己预设的放大倍数的声音。这样,用户即可通过蓝牙耳机 100 将自己想要收听的外部声音信号放大预设的倍数,从而获得理想的收听效果。 Referring to FIG. 5, the Bluetooth headset 100 is used as a second embodiment of the hearing aid, and an external mobile phone is used. The microphone captures the external sound signal that the user wants to listen to. First, the user stores the hearing spectrum data suitable for himself in the storage module 6 according to the above method, and then operates the switch 4 in the Bluetooth transceiver module 1 Establish an electrical connection with the noise cancellation module 5. Next, the user places a Bluetooth enabled mobile phone 220 next to the external sound signal that the user wants to listen to, and uses the application software to turn the mobile phone 220. The operation mode adjusts the external sound signal by using the microphone of the mobile phone 220, and transmits the collected external sound signal to the Bluetooth transceiver module 1 of the Bluetooth headset 100 through Bluetooth communication. Bluetooth transceiver module 1 The audio signal is transmitted to the noise cancellation module 5 via the switch 4, and the noise cancellation module 5 The audio signal is denoised according to the above method to eliminate interference of internal noise and external noise on the audio signal. The denoised audio signal is transmitted to the multi-frequency amplifier 7 and the multi-frequency amplifier 7 is based on the memory module 6 The stored hearing spectrum data corresponding to the frequency of the received audio signal is amplified by a certain multiple of the received audio signal, and then broadcasted through the speaker 8 to allow the user to pass the speaker 8 Hear the sound with his own preset magnification. In this way, the user can use the Bluetooth headset 100 to amplify the external sound signal that he or she wants to listen to by a preset multiple, thereby obtaining an ideal listening effect.

本发明提供的蓝牙耳机 100 将助听器的功能整合于其中,有利于简化助听器的硬件结构,降低总的生产成本,并增加使用的趣味性。另外,该蓝牙耳机 100 还具备降噪功能,无论是用作耳机还是助听器使用时,都能获得比现有耳机和助听器更好的音频播放效果。 Bluetooth headset 100 provided by the present invention Integrating the functions of the hearing aids facilitates simplifying the hardware structure of the hearing aid, reducing the overall production cost, and increasing the interest of use. In addition, the Bluetooth headset 100 It also features noise reduction, which provides better audio playback than existing headphones and hearing aids when used as a headset or hearing aid.

请参阅图 6 及图 7 ,本发明还提供一种音频装置 300 。该音频装置 300 包括上述的蓝牙耳机 100 和与该蓝牙耳机 100 建立有蓝牙通信连接的附加蓝牙模块 110 。该附加蓝牙模块 110 可以是各种现有的蓝牙通信模块,可以使用各种现有的蓝牙通信手段与蓝牙耳机 100 中的蓝牙收发模块 1 进行短程无线通信。 该附加蓝牙模块(110)用于从没有 内置 蓝牙功能的电子 设备(400、500)获取音频信号,并将该音频信号传输到该蓝牙耳机(100)。 Referring to Figures 6 and 7, the present invention also provides an audio device 300. The audio device 300 includes the above-mentioned Bluetooth headset 100 and an additional Bluetooth module 110 having a Bluetooth communication connection with the Bluetooth headset 100. The additional Bluetooth module 110 It can be various existing Bluetooth communication modules, and can perform short-range wireless communication with the Bluetooth transceiver module 1 in the Bluetooth headset 100 using various existing Bluetooth communication means. The additional Bluetooth module (110) is used for never The Bluetooth-enabled electronic device (400, 500) acquires an audio signal and transmits the audio signal to the Bluetooth headset (100).

图 6 是该音频装置 300 用于一娱乐设备 400 的工作原理图。该娱乐设备 400 可以是电视机、 DVD 机、音频放大器等可以播放音频信号但没有内置蓝牙模块的电子设备。该附加蓝牙模块 110 与该娱乐设备 400 依照已知方式(例如通过现有的音频接口)建立电性连接,取得由该娱乐设备 400 播放的音频信号,并通过蓝牙通信方式将该等音频信号传输到蓝牙收发模块 1 。此时即可依照上述的方法使用该蓝牙耳机 100 ,从而可以将该蓝牙耳机 100 作为该娱乐设备 400 的音频播放装置使用。 Figure 6 is a schematic diagram of the operation of the audio device 300 for an entertainment device 400. The entertainment device 400 can be a television set, An electronic device that can play audio signals but does not have a built-in Bluetooth module, such as a DVD player or an audio amplifier. The additional Bluetooth module 110 and the entertainment device 400 The electrical connection is established in a known manner (for example, through an existing audio interface), the audio signal played by the entertainment device 400 is obtained, and the audio signal is transmitted to the Bluetooth transceiver module by Bluetooth communication. . At this time, the Bluetooth headset 100 can be used in accordance with the above method, so that the Bluetooth headset 100 can be used as an audio playback device of the entertainment device 400.

图 7 是该音频装置 300 用于一固定电话 500 的工作原理图。该附加蓝牙模块 110 与该固定电话 500 依照已知方式(例如通过现有的音频接口)建立电性连接,取得由该固定电话 500 传输过来的音频信号,并通过蓝牙通信方式将该等音频信号传输到蓝牙收发模块 1 。此时即可依照上述的方法使用该蓝牙耳机 100 。另外,麦克风 2 也可以用于输入用户的语音,并依照现有方式将用户的语音传输到固定电话 500 ,通过固定电话网发送出去。这样,该蓝牙耳机 100 即可作为该固定电话 500 的无线听筒及话筒使用。 Figure 7 is a schematic diagram of the operation of the audio device 300 for a fixed telephone 500. The additional Bluetooth module 110 and the fixed telephone 500 establishes an electrical connection according to a known manner (for example, through an existing audio interface), obtains an audio signal transmitted by the fixed telephone 500, and transmits the audio signal to the Bluetooth transceiver module through Bluetooth communication. 1 . At this point, the Bluetooth headset 100 can be used as described above. In addition, the microphone 2 can also be used to input the user's voice and transmit the user's voice to the fixed telephone 500 in an existing manner. , sent out through the fixed telephone network. Thus, the Bluetooth headset 100 can be used as a wireless handset and microphone for the fixed telephone 500.

由上可见,上述音频装置 300 可以与多种现有的电子设备和通信设备配合使用,在使用过程中,该音频装置 300 中的蓝牙耳机 100 都可以依照上述方法执行助听、降噪和听力保护的功能,从而进一步拓展了该蓝牙耳机 100 的用途。 As can be seen from the above, the audio device 300 can be used in conjunction with a variety of existing electronic devices and communication devices. During use, the audio device The Bluetooth Headset 100 in the 300 can perform hearing aid, noise reduction and hearing protection functions as described above, further expanding the use of the Bluetooth headset 100.

以上所述仅为本发明的较佳实施例而已,本领域技术人员知悉,在不脱离本发明的精神和范围的情况下,可以对这些特征和实施例进行各种改变或等同替换。另外,在本发明的教导下,可以对这些特征和实施例进行修改以适应具体的情况及材料而不会脱离本发明的精神和范围。因此,本发明不受此处所公开的具体实施例的限制,所有落入本申请的权利要求范围内的实施例都属于本发明的保护范围。 The above are only the preferred embodiments of the present invention, and those skilled in the art can make various changes or equivalents to these features and embodiments without departing from the spirit and scope of the invention. In addition, these features and embodiments may be modified to adapt to the specific circumstances and materials without departing from the spirit and scope of the invention. Therefore, the present invention is not limited by the specific embodiments disclosed herein, and all the embodiments falling within the scope of the claims of the present invention fall within the scope of the present invention.

Claims (12)

一种蓝牙耳机(100),包括蓝牙收发模块(1)以及扬声器(8),其特征在于:所述蓝牙耳机(100)还包括多频放大器(7)及存储有预设的与音频信号的多个频率分别对应的听力频谱数据的存储模块(6),所述蓝牙收发模块(1)、所述存储模块(6)及所述扬声器(8)均与所述多频放大器(7)电性连接;所述蓝牙收发模块(1)以蓝牙通信方式接收音频信号,并将接收到的音频信号传输到所述多频放大器(7);所述多频放大器(7)根据接收到的音频信号的频率及所述存储模块(6)存储的与接收到的音频信号频率相对应的听力频谱数据将接收到的音频信号放大相应的倍数,并将放大后的音频信号传输到所述扬声器(8)播出。 A Bluetooth headset (100) includes a Bluetooth transceiver module (1) and a speaker (8), wherein the Bluetooth headset (100) further includes a multi-frequency amplifier (7) and a preset with an audio signal. a storage module (6) of a plurality of frequencies corresponding to the hearing spectrum data, wherein the Bluetooth transceiver module (1), the storage module (6), and the speaker (8) are electrically connected to the multi-frequency amplifier (7) a Bluetooth connection module (1) receiving an audio signal in a Bluetooth communication manner and transmitting the received audio signal to the multi-frequency amplifier (7); the multi-frequency amplifier (7) is based on the received audio The frequency of the signal and the audio spectrum data stored by the storage module (6) corresponding to the frequency of the received audio signal amplify the received audio signal by a corresponding multiple, and transmit the amplified audio signal to the speaker ( 8) Broadcast. 如权利要求 1 所述的蓝牙耳机(100),其特征在于:所述蓝牙耳机(100)还包括电性连接于所述蓝牙 收发 模块(1)与所述多频放大器(7)之间,用于消除所述蓝牙 收发 模块(1)输出的音频信号中的噪声的噪声消除模块(5)以及与所述噪声消除模块(5)电性连接,用于收集外界噪声的噪声收集模块(3)。  The Bluetooth headset (100) according to claim 1, wherein the Bluetooth headset (100) further comprises an electrical connection to the Bluetooth transceiver Between the module (1) and the multi-frequency amplifier (7), for eliminating the Bluetooth transceiver A noise canceling module (5) for noise in the audio signal outputted by the module (1) and a noise collecting module (3) electrically connected to the noise canceling module (5) for collecting external noise. 如权利要求 2 所述的蓝牙耳机(100),其特征在于:所述蓝牙耳机(100)还包括与所述多频放大器(7)电性连接,用于向所述多频放大器(7)提供外界音频信号的麦克风(2);所述蓝牙耳机(100)还包括切换开关(4),所述多频放大器(7)通过所述切换开关(4)可选择地与所述蓝牙 收发 模块(1)或所述麦克风(2)电性连接;所述噪声消除模块(5)电性连接于所述切换开关(4)与所述多频放大器(7)之间 。  Claims 2 The Bluetooth headset (100) is characterized in that: the Bluetooth headset (100) further comprises an electrical connection with the multi-frequency amplifier (7) for providing an external audio signal to the multi-frequency amplifier (7) Microphone (2); the Bluetooth headset (100) further includes a switch (4), the multi-frequency amplifier (7) selectively interacting with the Bluetooth through the switch (4) The transceiver module (1) or the microphone (2) is electrically connected; the noise cancellation module (5) is electrically connected between the switch (4) and the multi-frequency amplifier (7). 如权利要求 1 所述的蓝牙耳机(100),其特征在于:所述蓝牙耳机(100)还包括与所述存储模块(6)电性连接,用于向所述存储模块(6)中存入所述听力频谱数据的接口(9)。  Claims 1 The Bluetooth headset (100) is characterized in that the Bluetooth headset (100) further includes an electrical connection with the storage module (6) for depositing the hearing into the storage module (6) Interface for spectrum data (9). 如权利要求 1 所述的蓝牙耳机(100),其特征在于:所述蓝牙收发模块(1)与所述存储模块(6)电性连接,用于通过蓝牙通信接收所述听力频谱数据,并将所述听力频谱数据存入所述存储模块(6)。  Claims 1 The Bluetooth headset (100) is characterized in that: the Bluetooth transceiver module (1) is electrically connected to the storage module (6) for receiving the hearing spectrum data through Bluetooth communication, and the hearing The spectrum data is stored in the storage module (6). 如权利要求 1 所述的蓝牙耳机(100),其特征在于:所述听力频谱数据为用户预设的分别对应具有不同频率的音频信号的放大倍数。  Claims 1 The Bluetooth headset (100) is characterized in that: the hearing spectrum data is a preset magnification of an audio signal respectively corresponding to a user having different frequencies. 如权利要求 6 所述的蓝牙耳机(100),其特征在于:所述听力频谱数据为用户预设的分别对应频率为 300 Hz 、 600 Hz 、 1200 Hz 、 2400 Hz 、 4800 Hz 的音频信号的放大倍数。  The Bluetooth headset (100) according to claim 6, wherein the hearing spectrum data is preset by the user to have a corresponding frequency of 300 Hz, Magnification of audio signals at 600 Hz, 1200 Hz, 2400 Hz, 4800 Hz. 一种音频装置 (300) ,其特征在于:该音频装置 (300) 包括如权利要求 1-7 中任意一项所述的蓝牙耳机(100)以及与该蓝牙耳机(100)建立通信的附加蓝牙模块(110),该附加蓝牙模块(110)用于从没有 内置 蓝牙功能的电子 设备(400 、 500)获取音频信号,并将该音频信号传输到该蓝牙耳机(100)。  An audio device (300), characterized in that the audio device (300) comprises the claims 1-7 A Bluetooth headset (100) according to any of the preceding claims, and an additional Bluetooth module (110) for establishing communication with the Bluetooth headset (100) for use in an electronic device without built-in Bluetooth functionality The device (400, 500) acquires an audio signal and transmits the audio signal to the Bluetooth headset (100). 一种利用如权利要求 1-7 所述的 蓝牙耳机(100) 实现助听和抗噪功能的方法,其特征在于:包括以下步骤:A Bluetooth headset (100) using the claims 1-7 A method for realizing hearing aid and anti-noise function, comprising the steps of: S1 :设置听力频谱数据并保存在所述存储模块(6)中;S1: setting hearing spectrum data and saving in the storage module (6); S2A :利用所述蓝牙收发模块(1)以蓝牙通信方式接收音频信号,并将接收到的音频信号传输到 所述噪声消除模块(5) , 经过除噪处理后 将接收到的音频信号传输到所述多频放大器(7);S2A: receiving an audio signal by using the Bluetooth transceiver module (1) in a Bluetooth communication manner, and transmitting the received audio signal to the noise cancellation module (5), After the denoising process, the received audio signal is transmitted to the multi-frequency amplifier (7); S3 :利用所述多频放大器(7)根据接收到的音频信号的频率及所述存储模块(6)存储的与接收到的音频信号频率相对应的听力频谱数据将接收到的音频信号放大相应的倍数,并将放大后的音频信号传输到所述扬声器(8)播出。S3 Using the multi-frequency amplifier (7) to amplify the received audio signal according to the frequency of the received audio signal and the hearing spectrum data stored by the storage module (6) corresponding to the frequency of the received audio signal A multiple and transmitting the amplified audio signal to the speaker (8) for broadcast. 一种利用如权利要求 1-7 所述的 蓝牙耳机(100) 实现助听和抗噪功能的方法,其特征在于:包括以下步骤:A Bluetooth headset (100) using the claims 1-7 A method for realizing hearing aid and anti-noise function, comprising the steps of: S1 :设置听力频谱数据并保存在所述存储模块(6)中; S1: setting hearing spectrum data and saving in the storage module (6); S2B :利用所述 麦克风(2) 接收 外界音频信号 ,并将接收到的音频信号传输到 所述噪声消除模块(5),经过除噪处理后将接收到的音频信号传输到所述多频放大器(7);S2B: receiving the external audio signal by using the microphone (2), and transmitting the received audio signal to The noise cancellation module (5) transmits the received audio signal to the multi-frequency amplifier (7) after denoising processing; S3 :利用所述多频放大器(7)根据接收到的音频信号的频率及所述存储模块(6)存储的与接收到的音频信号频率相对应的听力频谱数据将接收到的音频信号放大相应的倍数,并将放大后的音频信号传输到所述扬声器(8)播出。S3 Using the multi-frequency amplifier (7) to amplify the received audio signal according to the frequency of the received audio signal and the hearing spectrum data stored by the storage module (6) corresponding to the frequency of the received audio signal A multiple and transmitting the amplified audio signal to the speaker (8) for broadcast. 一种利用如权利要求 8 所述的音频装置 (300) 连接没有内置 蓝牙功能的电子设备 ,实现助听和抗噪功能的方法,其特征在于:包括以下步骤:An electronic device using the audio device (300) according to claim 8 to connect an electronic device without built-in Bluetooth function A method for implementing a hearing aid and anti-noise function, comprising: the following steps: S1 :设置听力频谱数据并保存在所述存储模块(6)中;S1: setting hearing spectrum data and saving in the storage module (6); S2C :利用所述 附加蓝牙模块(110)从没有 内置 蓝牙功能的电子 设备(400 、 500)获取音频信号,并将该音频信号传输到该蓝牙耳机(100) ;利用所述蓝牙收发模块(1)以蓝牙通信方式接收音频信号,并将接收到的音频信号传输到所述噪声消除模块(5),经过除噪处理后将接收到的音频信号传输到所述多频放大器(7);S2C: using the additional Bluetooth module (110) from an electronic device without built-in Bluetooth function (400, 500) Acquire an audio signal and transmit the audio signal to the Bluetooth headset (100) Receiving an audio signal by using the Bluetooth transceiver module (1) in a Bluetooth communication manner, and transmitting the received audio signal to the noise cancellation module (5), and transmitting the received audio signal to the station after the noise removal processing Multi-frequency amplifier (7); S3 :利用所述多频放大器(7)根据接收到的音频信号的频率及所述存储模块(6)存储的与接收到的音频信号频率相对应的听力频谱数据将接收到的音频信号放大相应的倍数,并将放大后的音频信号传输到所述扬声器(8)播出。S3 Using the multi-frequency amplifier (7) to amplify the received audio signal according to the frequency of the received audio signal and the hearing spectrum data stored by the storage module (6) corresponding to the frequency of the received audio signal A multiple and transmitting the amplified audio signal to the speaker (8) for broadcast. 根据权利要求 9 或 10 或 11 所述的 利用音频装置实现助听和抗噪功能的方法,其特征在于,所述步骤 S1 包括:A method for implementing a hearing aid and an anti-noise function using an audio device according to claim 9 or 10 or 11, wherein said step S1 Includes: 使用 智能电子设备(200) ,依照频率从低到高的顺序依次播放具有不同频率的音频信号作为听力测试信号,用户通过蓝牙耳机(100)收听听力测试信号,当 所述智能电子设备(200) 每次播放出具有一种特定频率的音频信号时,用户都调节 所述智能电子设备(200) 的音量,直到听上去感觉最为清晰且最为舒适为止;Use Smart Electronics (200) Audio signals having different frequencies are sequentially played as a hearing test signal according to a frequency from low to high, and the user listens to the hearing test signal through the Bluetooth headset (100) when the intelligent electronic device (200) Each time an audio signal having a specific frequency is played, the user adjusts the volume of the smart electronic device (200) until it feels the clearest and most comfortable to hear; 将 所述智能电子设备(200) 当前播放具有这种听上去最为清晰且最为舒适的特定频率的音频信号时的放大倍数存储下来,作为与具有这种特定频率的音频信号相对应的听力频谱数据。通过 蓝牙通信方式或 接口(9), 所述智能电子设备(200) 将 所述 听力频谱数据传输到蓝牙耳机(100)并保存在存储模块(6)中 。The smart electronic device (200) The magnification at which the audio signal having the specific frequency which is the clearest and most comfortable to hear is currently played is stored as the hearing spectrum data corresponding to the audio signal having such a specific frequency. Via Bluetooth communication or The interface (9), the intelligent electronic device (200) transmits the hearing spectrum data to the Bluetooth headset (100) and saves it in the storage module (6).
PCT/CN2013/081065 2012-09-28 2013-08-08 Hearing-aid and anti-noise method and apparatus for bluetooth earphone Ceased WO2014048175A1 (en)

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WO2023231319A1 (en) * 2022-06-01 2023-12-07 由我(万安)科技有限公司 Intelligent frequency division method, intelligent frequency divider, intelligent frequency division device and apparatus, and medium
CN115988380B (en) * 2023-03-21 2023-06-20 东莞市云仕电子有限公司 Child wireless earphone with sleep promoting function and method
CN115988380A (en) * 2023-03-21 2023-04-18 东莞市云仕电子有限公司 Children wireless earphone with sleep promoting function and method
CN116347413A (en) * 2023-04-06 2023-06-27 深圳市亚昱科技有限公司 Audio transmission device and method

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CN104521247B (en) 2018-10-12
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