IP Library Granted Patent US 12694861
Granted Patent B2
US 12694861 · App. 18/676,619 · Granted Jul 28, 2026

Headset with active noise cancellation function and active noise cancellation method

Inventors: Xiaowei Yu (Shenzhen, CN); Jiasheng Li (Shenzhen, CN); Guopeng Wu (Shenzhen, CN); Shan Ouyang (Shenzhen, CN); Yulong Li (Shenzhen, CN); Fan Fan (Shenzhen, CN)
Assignee: HUAWEI TECHNOLOGIES CO., LTD.
G10K11/17823G10K11/17817G10K11/17825G10K11/17881G10K2210/1081G10K2210/3026G10K2210/3027G10K2210/3028G10K2210/3056H03G3/3005H03G2201/103
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Quick Facts
Patent No.
US 12694861
App. No.
18/676,619
Filed
May 29, 2024
Granted
Jul 28, 2026
Kind
B2
Examiner
TON, DAVID L
Art Unit
2695
USPC
381/71.6
Abstract

A headset with the active noise cancellation (ANC) function includes an ANC module, a plurality of speakers, a plurality of power drive circuits, and at least one reference microphone. An output end of any one of the plurality of power drive circuits is connected to at least one of the plurality speakers. The ANC module is connected between at least one reference microphone and input ends of the plurality of power drive circuits. The at least one reference microphone is configured to collect at least one first ambient noise signal. The ANC module is configured to obtain at least one mixed audio signal. The plurality of power drive circuits is configured to perform power amplification on the at least one mixed audio signal based on respective output powers to obtain at least one power-amplified mixed audio signal.

Claims (78)

1 . A headset with an active noise cancellation function, wherein the headset comprises:

an active noise cancellation module including at least one circuit, a plurality of speakers, a plurality of power drive circuits, and at least one reference microphone, wherein

an output end of any one of the plurality of power drive circuits is connected to at least one of the plurality of speakers, and the active noise cancellation module is connected between the at least one reference microphone and input ends of the plurality of power drive circuits;

the at least one reference microphone is configured to collect at least one first ambient noise signal;

the active noise cancellation module is configured to obtain at least one phase-inverted noise signal based on the at least one first ambient noise signal;

the active noise cancellation module is further configured to perform audio mixing on M downlink audio signals and the at least one phase-inverted noise signal to obtain at least one mixed audio signal, wherein M is any positive integer, and the M downlink audio signals come from an electronic device connected to the headset;

the plurality of power drive circuits is configured to perform power amplification on the at least one mixed audio signal based on respective output powers to obtain at least one power-amplified mixed audio signal; and

the plurality of speakers is configured to play the at least one power-amplified mixed audio signal,

wherein the at least one phase-inverted noise signal comprises M feed-forward phase-inverted noise signals, the active noise cancellation module comprises M FF modules and M fourth audio mixing circuits, and the M fourth audio mixing circuits are configured to perform audio mixing on the M downlink audio signals and corresponding feed-forward phase-inverted noise signals to obtain the M mixed audio signals.

2 . The headset according to claim 1 , wherein a quantity of the at least one phase-inverted noise signal is one; and

the active noise cancellation module is configured to separately perform audio mixing on the M downlink audio signals and one phase-inverted noise signal to obtain M mixed audio signals.

3 . The headset according to claim 2 , wherein the active noise cancellation module comprises a first audio mixing circuit, a second audio mixing circuit, and at least one feed-forward (FF) module;

the at least one FF module is configured to obtain at least one feed-forward phase-inverted noise signal based on the at least one first ambient noise signal;

the first audio mixing circuit is configured to perform audio mixing on the at least one feed-forward phase-inverted noise signal to obtain the phase-inverted noise signal; and

the second audio mixing circuit is configured to separately perform audio mixing on the M downlink audio signals and the phase-inverted noise signal to obtain the M mixed audio signals.

4 . The headset according to claim 3 , wherein the headset further comprises an error microphone; the active noise cancellation module further comprises a third audio mixing circuit, M secondary path estimation (SPE) modules, and at least one feedback (FB) module; input ends of the M SPE modules are configured to receive the M downlink audio signals, output ends of the M SPE modules are separately connected to an input end of the third audio mixing circuit, an output end of the third audio mixing circuit is connected to an input end of the at least one FB module, and an output end of the at least one FB module is connected to the first audio mixing circuit;

the error microphone is configured to collect the mixed audio signal played by the plurality of speakers and a second ambient noise signal;

the M SPE modules and the third audio mixing circuit are configured to obtain a feedback noise signal based on the mixed audio signal played by the plurality of speakers and the second ambient noise signal that are collected by the error microphone, and the M downlink audio signals;

the at least one FB module is configured to obtain at least one feedback phase-inverted noise signal based on the feedback noise signal; and

the first audio mixing circuit is configured to perform audio mixing on the at least one feed-forward phase-inverted noise signal and the at least one feedback phase-inverted noise signal to obtain the phase-inverted noise signal.

5 . The headset according to claim 4 , wherein, when the active noise cancellation module comprises a plurality of FB modules, filters comprised in the plurality of FB modules have different frequency characteristics.

6 . The headset according to claim 3 , wherein, when the active noise cancellation module comprises a plurality of FF modules, filters comprised in the plurality of FF modules have different frequency characteristics.

7 . The headset according to claim 6 , wherein the different frequency characteristics comprise different frequency ranges, or a same frequency range but different amplitude-frequency characteristics or phase-frequency characteristics corresponding to at least one frequency band range.

8 . The headset according to claim 1 , wherein, when M is greater than 1, the active noise cancellation module is configured to respectively perform audio mixing on the M downlink audio signals and corresponding phase-inverted noise signals to obtain M mixed audio signals.

9 . The headset according to claim 8 , wherein

each input end of the M FF modules is connected to the at least one reference microphone, and each output end of the M FF modules is connected to an input end of one of the M fourth audio mixing circuits; and

the M FF modules are configured to obtain the M feed-forward phase-inverted noise signals based on the at least one first ambient noise signal.

10 . The headset according to claim 9 , wherein

the headset further comprises an error microphone;

the active noise cancellation module further comprises a third audio mixing circuit, M SPE modules, M FB modules, and M fifth audio mixing circuits;

input ends of the M SPE modules are configured to receive the M downlink audio signals, output ends of the M SPE modules are separately connected to an input end of the third audio mixing circuit, an output end of the third audio mixing circuit is connected to input ends of the M FB modules, and each output end of the M FB modules and each output end of the M FF modules are connected to an input end of a corresponding fifth audio mixing circuit;

the error microphone is configured to collect the mixed audio signal played by the plurality of speakers and a second ambient noise signal;

the M SPE modules and the third audio mixing circuit are configured to obtain a feedback noise signal based on the mixed audio signal played by the plurality of speakers and the second ambient noise signal that are collected by the error microphone, and the M downlink audio signals;

the M FB modules are configured to obtain M feedback phase-inverted noise signals based on the feedback noise signal;

the M fifth audio mixing circuits are respectively configured to perform audio mixing on the feed-forward phase-inverted noise signals of the corresponding FF modules and the feedback phase-inverted noise signals of the corresponding FB modules to obtain the at least one phase-inverted noise signal; and

the M fourth audio mixing circuits are configured to perform audio mixing on the M downlink audio signals and corresponding phase-inverted noise signals to obtain the M mixed audio signals.

11 . The headset according to claim 1 , further comprising a main control unit (MCU) configured to determine a parameter used by the active noise cancellation module.

12 . The headset according to claim 11 , wherein the MCU is configured to: when acoustic environment information, ambient noise, or noise cancellation requirement information of a user changes, determine, from a plurality of groups of parameters based on the acoustic environment information, the ambient noise, and/or the noise cancellation requirement information of the user, the parameter used by the active noise cancellation module; and

the acoustic environment information indicates an acoustic environment formed by an ear canal of the user and the headset.

13 . An active noise cancellation method, comprising:

obtaining at least one first ambient noise signal collected by at least one reference microphone;

obtaining at least one phase-inverted noise signal based on the at least one first ambient noise signal;

performing audio mixing on M downlink audio signals and the at least one phase-inverted noise signal to obtain at least one mixed audio signal, wherein M is any positive integer, and the M downlink audio signals come from an electronic device connected to a headset;

performing power amplification on the at least one mixed audio signal based on a plurality of output powers to obtain at least one power-amplified mixed audio signal; and

playing the at least one power-amplified mixed audio signal by using a plurality of speakers,

wherein a quantity of the at least one phase-inverted noise signal is M, and when M is greater than 1, the performing audio mixing on M downlink audio signals and the at least one phase-inverted noise signal to obtain at least one mixed audio signal comprises:

respectively performing audio mixing on the M downlink audio signals and corresponding phase-inverted noise signals to obtain M mixed audio signals, and

wherein the obtaining at least one phase-inverted noise signal based on the at least one first ambient noise signal comprises;

obtaining M feed-forward phase-inverted noise signals based on the at least one first ambient noise signal, and

obtaining M phase-inverted noise signals based on the M feed-forward phase-inverted noise signals.

14 . The method according to claim 13 , wherein, when a quantity of the at least one phase-inverted noise signal is one, the obtaining at least one phase-inverted noise signal based on the at least one first ambient noise signal comprises:

obtaining at least one feed-forward phase-inverted noise signal based on the at least one first ambient noise signal; and

performing audio mixing on the at least one feed-forward phase-inverted noise signal to obtain one phase-inverted noise signal.

15 . The method according to claim 14 , further comprising:

obtaining the mixed audio signal played by the plurality of speakers and a second ambient noise signal that are collected by an error microphone;

obtaining a feedback noise signal based on the mixed audio signal played by the plurality of speakers and the second ambient noise signal that are collected by the error microphone, and the M downlink audio signals; and

obtaining at least one feedback phase-inverted noise signal based on the feedback noise signal, wherein

when the quantity of the at least one phase inverted noise signal is one, the performing audio mixing on the at least one feed-forward phase-inverted noise signal to obtain one phase-inverted noise signal comprises:

performing audio mixing on the at least one feed-forward phase-inverted noise signal and the at least one feedback phase-inverted noise signal to obtain the one phase-inverted noise signal.

16 . The method according to claim 13 , wherein M is greater than 1.

17 . The method according to claim 13 , further comprising:

obtaining the mixed audio signal played by the plurality of speakers and a second ambient noise signal that are collected by an error microphone;

obtaining a feedback noise signal based on the mixed audio signal played by the plurality of speakers and the second ambient noise signal that are collected by the error microphone, and the M downlink audio signals; and

obtaining M feedback phase-inverted noise signals based on the feedback noise signal, wherein

the obtaining M phase-inverted noise signals based on the M feed-forward phase-inverted noise signals comprises:

respectively performing audio mixing on the M feedback phase-inverted noise signals and corresponding feed-forward phase-inverted noise signals to obtain the at least one phase-inverted noise signal.

18 . The method according to claim 13 , further comprising:

when acoustic environment information, ambient noise, or noise cancellation requirement information of a user changes, determining, from a plurality of groups of parameters based on the acoustic environment information, the ambient noise, and/or the noise cancellation requirement information of the user, a parameter used by an active noise cancellation module, wherein

the acoustic environment information indicates an acoustic environment formed by an ear canal of the user and the headset, and the parameter used by the active noise cancellation module is used to generate the at least one phase-inverted noise signal.

19 . An audio system with an active noise cancellation function, wherein the audio system comprises an electronic device and a headset, the electronic device establishes a connection to the headset, and the headset comprises:

an active noise cancellation module including at least one circuit, a plurality of speakers, a plurality of power drive circuits, and at least one reference microphone, wherein

an output end of any one of the plurality of power drive circuits is connected to at least one of the plurality of speakers, and the active noise cancellation module is connected between the at least one reference microphone and input ends of the plurality of power drive circuits;

the at least one reference microphone is configured to collect at least one first ambient noise signal;

the active noise cancellation module is configured to obtain at least one phase-inverted noise signal based on the at least one first ambient noise signal;

the active noise cancellation module is further configured to perform audio mixing on M downlink audio signals and the at least one phase-inverted noise signal to obtain at least one mixed audio signal, wherein M is any positive integer, and the M downlink audio signals come from an electronic device connected to the headset;

the plurality of power drive circuits is configured to perform power amplification on the at least one mixed audio signal based on respective output powers to obtain at least one power-amplified mixed audio signal; and

the plurality of speakers is configured to play the at least one power-amplified mixed audio signal,

wherein the at least one phase-inverted noise signal comprises M feed forward phase-inverted noise signals, the active noise cancellation module comprises M FF modules and M fourth audio mixing circuits, and the M fourth audio mixing circuits are configured to perform audio mixing on the M downlink audio signals and corresponding feed-forward phase-inverted noise signals to obtain the M mixed audio signals.