IP Library Granted Patent US 9,253,573
Granted Patent B2
US 9,253,573 · App. 14/351,184 · Granted Feb 2, 2016

Acoustic signal processing apparatus, acoustic signal processing method, program, and recording medium

Inventor: Kenji Nakano (Kanagawa, JP)
Assignee: Sony Corporation
H04R5/02H04S3/002H04S7/307H04S2400/01H04S2420/01
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Quick Facts
Patent No.
US 9,253,573
App. No.
14/351,184
Granted
Feb 2, 2016
Kind
B2
Abstract

The present technology relates to an acoustic signal processing apparatus, an acoustic signal processing method, a program, and a recording medium for improving a localization of sound of a sound image at a position deviated from the front center plane of a listener to the left side of the right side. A binauralization processing unit generates a first binaural signal by superimposing an HRTF on an opposite side of a sound source on an acoustic signal and a second binaural signal by attenuating components of a band in which a first notch and a second notch of the HRTF on the opposite side of the sound source appear among components of a signal obtained by superimposing an HRTF on a side of the sound source on the acoustic signal. A crosstalk compensation processing unit performs, with respect to the first binaural signal and the second binaural signal, a crosstalk compensation for canceling out an acoustic transfer characteristic and a crosstalk. The present technology can be applied to, for example, an AV amplifier.

Claims (37)

1. An acoustic signal processing apparatus, comprising:

a first binauralization processing unit configured to generate a first binaural signal by superimposing a first head-related transfer function between a virtual sound source deviated from a front center plane at a predetermined listening position to a left side or a right side and a first ear on a far side from the virtual sound source at the listening position on an acoustic signal;

a second binauralization processing unit configured to generate a second binaural signal by attenuating, among components of a signal obtained by superimposing a second head-related transfer function between the virtual sound source and a second ear on a near side to the virtual sound source at the listening position on the acoustic signal, components of a first band and a second band, the first band and the second band being a lowest band and a second lowest band, respectively, among bands in which a negative peak having a depth equal to or deeper than a predetermined depth appears on an amplitude of the first head-related transfer function at a frequency equal to or higher than a predetermined frequency; and

a crosstalk compensation processing unit configured to perform a crosstalk compensation processing for canceling out, with respect to the first binaural signal and the second binaural signal, an acoustic transfer characteristic between a first speaker on a near side to the first ear between speakers arranged symmetrically with respect to the listening position and the first ear, an acoustic transfer characteristic between a second speaker on a near side to the second ear between the speakers arranged symmetrically with respect to the listening position and the second ear, a crosstalk from the first speaker to the second ear, and a crosstalk from the second speaker to the first ear.

2. The acoustic signal processing apparatus according to claim 1 , wherein

the first binauralization processing unit is configured to generate a third binaural signal by attenuating components of the first band and the second band among components of the first binaural signal, and

the crosstalk compensation processing unit is configured to perform the crosstalk compensation processing with respect to the second binaural signal and the third binaural signal.

3. The acoustic signal processing apparatus according to claim 1 , wherein the predetermined frequency is a frequency at which a positive peak appears in proximity of 4 kHz of the first head-related transfer function.

4. An acoustic signal processing method, comprising:

generating a first binaural signal by superimposing a first head-related transfer function between a virtual sound source deviated from a front center plane at a predetermined listening position to a left side or a right side and a first ear on a far side from the virtual sound source at the listening position on an acoustic signal;

generating a second binaural signal by attenuating, among components of a signal obtained by superimposing a second head-related transfer function between the virtual sound source and a second ear on a near side to the virtual sound source at the listening position on the acoustic signal, components of a first band and a second band, the first band and the second band being a lowest band and a second lowest hand, respectively, among bands in which a negative peak having a depth equal to or deeper than a predetermined depth appears on an amplitude of the first head-related transfer function at a frequency equal to or higher than a predetermined frequency; and

performing a crosstalk compensation processing for canceling out, with respect to the first binaural signal and the second binaural signal, an acoustic transfer characteristic between a first speaker on a near side to the first ear between speakers arranged symmetrically with respect to the listening position and the first ear, an acoustic transfer characteristic between a second speaker on a near side to the second ear between the speakers arranged symmetrically with respect to the listening position and the second ear, a crosstalk from the first speaker to the second ear, and a crosstalk from the second speaker to the first ear.

5. A program for causing a computer to execute:

generating a first binaural signal by superimposing a first head-related transfer function between a virtual sound source deviated from a front center plane at a predetermined listening position to a left side or a right side and a first ear on a far side from the virtual sound source at the listening position on an acoustic signal;

generating a second binaural signal by attenuating, among components of a signal obtained by superimposing a second head-related transfer function between the virtual sound source and a second ear on a near side to the virtual sound source at the listening position on the acoustic signal, components of a first band and a second band, the first band and the second band being a lowest band and a second lowest band, respectively, among bands in which a negative peak having a depth equal to or deeper than a predetermined depth appears on an amplitude of the first head-related transfer function at a frequency equal to or higher than a predetermined frequency; and

performing a crosstalk compensation processing for canceling out, with respect to the first binaural signal and the second binaural signal, an acoustic transfer characteristic between a first speaker on a near side to the first ear between speakers arranged symmetrically with respect to the listening position and the first ear, an acoustic transfer characteristic between a second speaker on a near side to the second ear between the speakers arranged symmetrically with respect to the listening position and the second ear, a crosstalk from the first speaker to the second ear, and a crosstalk from the second speaker to the first ear.

6. A computer-readable recording medium that stores therein a program according to claim 5 .

7. An acoustic signal processing apparatus, comprising:

an attenuation unit configured to generate a second acoustic signal by attenuating components of a first band and a second band among components of a first acoustic signal, the first band and the second band being a lowest band and a second lowest band, respectively, among bands in which a negative peak having a depth equal to or deeper than a predetermined depth appears on an amplitude of a first head-related transfer function between a virtual sound source deviated from a front center plane at a predetermined listening position to a left side or a right side and a first ear on a far side from the virtual sound source at the listening position at a frequency equal to or higher than a predetermined frequency; and

a signal processing unit configured to perform, in an integrated manner,

a processing for generating a first binaural signal by superimposing the first head-related transfer function on the second acoustic signal and a second binaural signal by superimposing a second head-related transfer function between the virtual sound source and a second ear on a near side to the virtual sound source at the listening position on the second acoustic signal, and

a processing for canceling out, with respect to the first binaural signal and the second binaural signal, an acoustic transfer characteristic between a first speaker on a near side to the first ear between speakers arranged symmetrically with respect to the listening position and the first ear, an acoustic transfer characteristic between a second speaker on a near side to the second ear between the speakers arranged symmetrically with respect to the listening position and the second ear, a crosstalk from the first speaker to the second ear, and a crosstalk from the second speaker to the first ear.

8. The acoustic signal processing apparatus according to claim 7 , wherein the predetermined frequency is a frequency at which a positive peak appears in proximity of 4 kHz of the first head-related transfer function.

9. The acoustic signal processing apparatus according to claim 8 , wherein

the attenuation unit includes an infinite impulse response (IIR) filter, and

the signal processing unit includes a finite impulse response (FIR) filter.

10. An acoustic signal processing method, comprising:

generating a second acoustic signal by attenuating components of a first band and a second band among components of a first acoustic signal, the first band and the second band being a lowest band and a second lowest band, respectively, among bands in which a negative peak having a depth equal to or deeper than a predetermined depth appears on an amplitude of a first head-related transfer function between a virtual sound source deviated from a front center plane at a predetermined listening position to a left side or a right side and a first ear on a far side from the virtual sound source at the listening position at a frequency equal to or higher than a predetermined frequency; and

performing, in an integrated manner,

a processing for generating a first binaural signal by superimposing the first head-related transfer function on the second, acoustic signal and a second binaural signal by superimposing a second head-related transfer function between the virtual sound source and a second ear on a near side to the virtual sound source at the listening position on the second acoustic signal, and

a processing for canceling out, with respect to the first binaural signal and the second binaural signal, an acoustic transfer characteristic between a first speaker on a near side to the first ear between speakers arranged symmetrically with respect to the listening position and the first ear, an acoustic transfer characteristic between a second speaker on a near side to the second ear between the speakers arranged symmetrically with respect to the listening position and the second ear, a crosstalk from the first speaker to the second ear, and a crosstalk from the second speaker to the first ear.

11. A program for causing a computer to execute:

generating a second acoustic signal by attenuating components of a first band and a second band among components of a first acoustic signal, the first band and the second band being a lowest band and a second lowest band, respectively, among bands in which a negative peak having a depth equal to or deeper than a predetermined depth appears on an amplitude of a first head-related transfer function between a virtual sound source deviated from a front center plane at a predetermined listening position to a left side or a right side and a first ear on a far side from the virtual sound source at the listening position at a frequency equal to or higher than a predetermined frequency; and

performing, in an integrated manner,

a processing for generating a first binaural signal by superimposing the first head-related transfer function on the second acoustic signal and a second binaural signal by superimposing a second head-related transfer function between the virtual sound source and a second ear on a near side to the virtual sound source at the listening position on the second acoustic signal, and

a processing for canceling out, with respect to the first binaural signal and the second binaural signal, an acoustic transfer characteristic between a first speaker on a near side to the first ear between speakers arranged symmetrically with respect to the listening position and the first ear, an acoustic transfer characteristic between a second speaker on a near side to the second ear between the speakers arranged symmetrically with respect to the listening position and the second ear, a crosstalk from the first speaker to the second ear, and a crosstalk from the second speaker to the first ear.

12. A computer-readable recording medium that stores therein a program according to claim 11 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2014
From: NAKANO, KENJI
To: SONY CORPORATION
Reel/Frame 032653/0054 →
Priority Claims (1)
JP 2011-256142 · Nov 24, 2011 · national
Continuity (1)
Related Publication 20140286511A1 · Sep 25, 2014