Method and apparatus for controlling multi-microphone noise-canceling sound pickup range of terminal

US10148801B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10148801-B2
Application numberUS-201615735895-A
CountryUS
Kind codeB2
Filing dateMar 9, 2016
Priority dateOct 20, 2015
Publication dateDec 4, 2018
Grant dateDec 4, 2018

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  1. Title

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  4. Key dates

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A method and an apparatus for controlling a multi-microphone noise-canceling sound pickup range of a terminal, and belongs to the field of terminal technologies, where the method includes transmitting a first non-voice signal, receiving a second non-voice signal that is obtained after the first non-voice signal is reflected by a reflecting object, determining, according to the first non-voice signal and the second non-voice signal, whether a posture with which a user holds a terminal during a call is a normal posture, and adjusting a multi-microphone noise-canceling sound pickup range of the terminal when the posture with which the user holds the terminal during the call is not a normal posture. Hence, accuracy of adjusting a multi-microphone noise-canceling sound pickup range of a terminal can be improved. The apparatus includes a transmission module, a receiving module, a first determining module, and an adjustment module.

First claim

Opening claim text (preview).

What is claimed is: 1. A method for controlling a multi-microphone noise-canceling sound pickup range of a terminal, comprising: transmitting a first non-voice signal; receiving a second non-voice signal that is obtained after the first non-voice signal is received from a reflecting object; determining, according to the first non-voice signal and the second non-voice signal, whether a posture with which a user holds the terminal during a call is a normal posture; and adjusting the multi-microphone noise-canceling sound pickup range of the terminal when the posture with which the user holds the terminal during the call is not the normal posture, the first non-voice signal comprising a first infrared signal, the second non-voice signal comprising a second infrared signal, and determining whether the posture with which the user holds the terminal during the call is the normal posture comprising: obtaining first light intensity of the first infrared signal transmitted by a first optical proximity sensor on the terminal and second light intensity of the second infrared signal received by the first optical proximity sensor; calculating a first intensity difference between the second light intensity and the first light intensity; determining, according to the first intensity difference, whether the posture with which the user holds the terminal during the call is the normal posture; obtaining third light intensity of a third infrared signal transmitted by a second optical proximity sensor on the terminal and fourth light intensity of a fourth infrared signal that is obtained after the third infrared signal is received from the reflecting object and that is received by the second optical proximity sensor; calculating a second intensity difference between the fourth light intensity and the third light intensity; calculating a first distance between the first optical proximity sensor and the reflecting object and a second distance between the second optical proximity sensor and the reflecting object respectively according to the first intensity difference and the second intensity difference; calculating an included angle between the terminal and the reflecting object according to the first distance, the second distance, and a third distance between the first optical proximity sensor and the second optical proximity sensor; and determining that the included angle comprises a valgus angle at which the user holds the terminal. 2. The method of claim 1 , wherein determining whether the posture with which the user holds the terminal during the call is the normal posture further comprises: determining that the posture with which the user holds the terminal during the call is not the normal posture when the first intensity difference is greater than first preset intensity; calculating a first distance between the first optical proximity sensor and the reflecting object according to the first intensity difference; and determining that the posture with which the user holds the terminal during the call is not the normal posture when the first distance is greater than a first preset distance. 3. The method of claim 1 , wherein before determining whether the posture with which the user holds the terminal is the normal posture, the method further comprises: determining that the posture with which the user holds the terminal during the call is not the normal posture when the second intensity difference is greater than second preset intensity; and determining that the posture with which the user holds the terminal during the call is the normal posture when the second intensity difference is not greater than the second preset intensity. 4. The method of claim 1 , wherein the first non-voice signal further comprises a first high-frequency ultrasonic signal, the second non-voice signal further comprises a second high-frequency ultrasonic signal, and determining whether the posture with which the user holds the terminal during the call is the normal posture comprising: obtaining a first transfer function for the first high-frequency ultrasonic signal from an earpiece of the terminal to a first microphone according to the first high-frequency ultrasonic signal and the second high-frequency ultrasonic signal; and determining, according to the first transfer function, whether the posture with which the user holds the terminal during the call is the normal posture. 5. The method of claim 4 , wherein determining whether the posture with which the user holds the terminal during the call is the normal posture further comprises: calculating a first similarity between the first transfer function and a transfer function corresponding to the normal posture; and determining that the posture with which the user holds the terminal during the call is not the normal posture when the first similarity is less than a first preset similarity. 6. The method of claim 4 , wherein determining whether the posture with which the user holds the terminal during the call is the normal posture further comprises: obtaining at least one second transfer function for the first high-frequency ultrasonic signal from the earpiece of the terminal to at least one second microphone according to the first high-frequency ultrasonic signal and the second high-frequency ultrasonic signal; calculating a first similarity between the first transfer function and a transfer function corresponding to the normal posture, and a second similarity between each of the at least one second transfer function and the transfer function corresponding to the normal posture to obtain at least one second similarity; calculating a comprehensive similarity according to the first similarity and the at least one second similarity; and determining that the posture with which the user holds the terminal during the call is not the normal posture when the comprehensive similarity is less than a second preset similarity. 7. The method of claim 4 , further comprising: separately calculating a third similarity between the first transfer function and each transfer function in a transfer function set according to the first transfer function, wherein the transfer function set stores a transfer function corresponding to each valgus angle at which the user holds the terminal during the call; selecting a transfer function that has a largest third similarity with the first transfer function; and determining that a valgus angle corresponding to the selected transfer function comprises a valgus angle at which the user holds the terminal during the call. 8. The method of claim 1 , wherein adjusting the multi-microphone noise-canceling sound pickup range of the terminal comprises: increasing the multi-microphone noise-canceling sound pickup range of the terminal; or obtaining a sound pickup range matching the valgus angle, and adjusting the multi-microphone noise-canceling sound pickup range of the terminal to the sound pickup range matching the valgus angle. 9. An apparatus for controlling a multi-microphone noise-canceling sound pickup range of a terminal, comprising: a transmitter configured to transmit a first non-voice signal; a receiver configured to receive a second non-voice signal that is obtained after the first non-voice signal is received from a reflecting object; and a processor coupled to the transmitter and the receiver and configured to: determine, according to the first non-voice signal and the second non-voice signal, whether a posture with which a user holds the terminal during a call is a normal posture; adjust the multi-microphone noise-canceling sound pickup range of the terminal when the posture with which the user holds the terminal during the call is not the normal posture, the first

Assignees

Inventors

Classifications

  • Electricity · mapped topic

  • for combining the signals of two or more microphones (specially adapted for hearing aids H04R25/407) · CPC title

  • H04M1/19Primary

    Arrangements of transmitters, receivers, or complete sets to prevent eavesdropping, to attenuate local noise or to prevent undesired transmission; Mouthpieces or receivers specially adapted therefor (circuit arrangements for preventing eavesdropping H04M1/68; telephone cabinets E04H1/14) · CPC title

  • microphones · CPC title

  • including a sensor for measuring a physical value, e.g. temperature or motion · CPC title

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What does patent US10148801B2 cover?
A method and an apparatus for controlling a multi-microphone noise-canceling sound pickup range of a terminal, and belongs to the field of terminal technologies, where the method includes transmitting a first non-voice signal, receiving a second non-voice signal that is obtained after the first non-voice signal is reflected by a reflecting object, determining, according to the first non-voice s…
Who is the assignee on this patent?
Huawei Tech Co Ltd
What technology area does this patent fall under?
Primary CPC classification H04M1/19. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Dec 04 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 6 related publications on this page (citations in our corpus or others sharing the same primary CPC).