IP Library Granted Patent US 9,706,297
Granted Patent B2
US 9,706,297 · App. 13/080,767 · Granted Jul 11, 2017

Audio processing apparatus and related method

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Quick Facts
Patent No.
US 9,706,297
App. No.
13/080,767
Granted
Jul 11, 2017
Kind
B2
Abstract

An audio processing apparatus including an audio phase detecting device and an adjusting device is provided. After detecting a phase relationship between a first channel signal and a second channel signal, the audio phase detecting device generates a phase control signal. The adjusting device is coupled to the audio phase detecting device and used for selectively adjusting the first channel signal according to the phase control signal.

Claims (51)

1. An audio processing apparatus, comprising:

an audio phase detecting device, for detecting a phase relationship between a first channel signal and a second channel signal, to generate a phase control signal; and

an adjusting device, coupled to the audio phase detecting device, for adjusting a phase of only the first channel signal according to the phase control signal and for correcting a phase inconformity between the first channel signal and the second channel signal by applying a 180 degree phase shift to the first channel signal regardless of a frequency of the first channel signal,

wherein the audio phase detecting device comprises:

a first energy detector, for detecting an addition energy of the first channel signal and the second channel signal;

a second energy detector, for detecting a subtraction energy of the first channel signal and the second channel signal; and

a comparison module, for comparing the addition energy with the subtraction energy to generate the phase control signal, and

wherein the adjusting device comprises a zero crossing detector for determining whether only the first channel signal meets a low amplitude requirement, and the adjusting device adjusts the first channel signal when the first channel signal meets the low amplitude requirement.

2. The audio processing apparatus of claim 1 , wherein the comparison module deasserts the phase control signal for requesting the adjusting device to stop adjusting the first channel signal when the subtraction energy is below the addition energy by a first threshold for a first predetermined time.

3. The audio processing apparatus of claim 1 , wherein the comparison module asserts the phase control signal for requesting the adjusting device to adjust the first channel signal when the subtraction energy is higher than the addition energy for a second predetermined time.

4. The audio processing apparatus of claim 1 , wherein the comparison module asserts the phase control signal for requesting the adjusting device to adjust the first channel signal when the subtraction energy exceeds the addition energy by a second threshold for a second predetermined time.

5. The audio processing apparatus of claim 1 , wherein the first energy detector comprises:

an adder, for adding the first channel signal to the second channel signal to generate an addition signal;

an absolute value unit, for generating a first absolute signal corresponding to the addition signal;

a first low pass filter, for filtering the first absolute signal to generate a first filtering result; and

a first decibel converting unit, for converting the first filtering result to an addition energy in a unit of decibel.

6. The audio processing apparatus of claim 1 , wherein the second energy detector comprises:

a subtractor, for subtracting the second channel signal from the first channel signal to generate a subtraction signal;

a second absolute value unit, for generating a second absolute signal corresponding to the subtraction signal;

a second low pass filter, for filtering the second absolute signal to generate a second filtering result; and

a second decibel converting unit, for converting the second filtering result to a subtraction energy in a unit of decibel.

7. The audio processing apparatus of claim 1 , wherein the adjusting device selectively inverts the phase of the first channel signal.

8. The audio processing device of claim 1 , wherein the audio phase detecting device further comprises a timer, coupled to the comparison module, wherein the comparison module deasserts the phase control signal for requesting the adjusting device to stop adjusting the first channel signal when the subtraction energy is lower than the addition energy for a first predetermined time.

9. An audio processing method, comprising:

detecting a phase relationship between a first channel signal and a second channel signal to generate a phase control signal; and

adjusting a phase of only the first channel signal according to the phase control signal to correct a phase inconformity between the first channel signal and the second channel signal by applying a 180 degree phase shift to the first channel signal regardless of a frequency of the first channel signal,

wherein the step of detecting the phase relationship comprises:

(a1) detecting an addition energy of the first channel signal and the second channel signal;

(a2) detecting a subtraction energy of the first channel signal and the second channel signal; and

(a3) comparing the addition energy with the subtraction energy to generate the phase control signal,

wherein the step of adjusting the first channel signal comprises:

when the first channel signal meets a low amplitude requirement according to a zero crossing detector, adjusting the first channel signal.

10. The audio processing method of claim 9 , wherein the step (a3) further comprises:

when the subtraction energy is below the addition energy by a first threshold for a first predetermined time, deasserting the phase control signal for requesting to stop adjusting the first channel signal.

11. The audio processing method of claim 9 , wherein the step (a3) further comprises:

when the subtraction energy is higher than the addition energy for a second predetermined time, asserting the phase control signal for requesting to adjust the first channel signal.

12. The audio processing method of claim 9 , wherein the step (a3) further comprises:

when the subtraction energy exceeds the addition energy by a second threshold for a second predetermined time, asserting the phase control signal for requesting to adjust the first channel signal.

13. The audio processing method of claim 9 , wherein the step (a1) further comprises:

adding the first channel signal to the second channel signal, for generating an addition signal;

generating a first absolute value signal corresponding to the addition signal;

filtering the first absolute value signal to generate a first filtering result value; and

converting the first filtering result value to an addition energy value in a unit of decibel.

14. The audio processing method of claim 9 , wherein the step (a2) further comprises:

subtracting the second channel signal from the first channel signal to generate a subtraction signal;

generating a second absolute value signal corresponding to the subtraction signal;

filtering the second absolute value signal to generate a second filtering result value; and

converting the second filtering result value to a subtraction energy in a unit of decibel.

15. The audio processing method of claim 9 , wherein the step of adjusting the first channel signal comprises selectively reversing the phase of the first channel signal.

16. The audio processing method of claim 9 , wherein the step (a3) further comprises:

when the subtraction energy is lower than the addition energy for a first predetermined time, deasserting the phase control signal for requesting to stop adjusting the first channel signal.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2023
From: MAYSIDE LICENSING LLC
To: COMMUNICATION ADVANCES LLC
Reel/Frame 064869/0020 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 17, 2023
From: MEDIATEK INC.
To: MAYSIDE LICENSING LLC
Reel/Frame 064840/0811 →
MERGER Recorded Jun 12, 2020
From: MSTAR SEMICONDUCTOR, INC.
To: MEDIATEK INC.
Reel/Frame 052931/0468 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2011
From: CHANG, JUNG-KUEI; LIN, HUANG-HSIANG
To: MSTAR SEMICONDUCTOR, INC.
Reel/Frame 026081/0214 →