IP Library › Granted Patent US 8,363,845
Granted Patent B2
US 8,363,845 · App. 12/034,269 · Granted Jan 29, 2013

Speaker array apparatus and signal processing method therefor

Inventors: Takashi Yamakawa (Iwata, JP); Kenichi Tamiya (Hamamatsu, JP); Koji Kushida (Hamamatsu, JP); Ken Iwayama (Hamamatsu, JP)
Assignee: Yamaha Corporation
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Quick Facts
Patent No.
US 8,363,845
App. No.
12/034,269
Granted
Jan 29, 2013
Kind
B2
Abstract

A speaker array apparatus capable of performing directivity control with ease even when sound emission is performed based on audio signals of different frequency ranges. The speaker array apparatus includes a speaker unit for emitting high-frequency range sound, and another speaker unit for emitting low- and high-frequency range sound. A signal processed by a high pass filter is used for generation of both audio signals used by these speaker units to emit the high-frequency range sounds. Since both the audio signals are rotated in phase similarly to each other, the phases of audio signals supplied to both the speaker units are in coincidence with each other in high-frequency range, which makes it easy to carry out directivity control.

Claims (46)

1. A signal processing method for a speaker array apparatus comprising:

a signal divider;

an amplitude adjuster having a plurality of gain amplifiers;

a first speaker unit; and

a second speaker unit,

wherein the method comprises:

a signal division step of dividing, with the signal divider, an input audio signal into a first audio signal of a first predetermined frequency range to generate a plurality of divided audio signals;

a first output step of outputting, with the amplitude adjuster, a first divided audio signal of a first predetermined frequency range, among the plurality of divided audio signals, to the first speaker unit but not to the second speaker unit;

a second output step of outputting, with the amplitude adjuster, a second divided audio signal of a second predetermined frequency range, among the plurality of divided audio signals, to the second speaker unit; and

a third output step of outputting, with the amplitude adjuster, a third divided audio signal, among the plurality of divided audio signals, to the second speaker unit.

2. A signal processing method for a speaker array apparatus comprising:

a signal divider;

an amplitude adjuster;

a first speaker unit;

a controller unit; and

a second speaker unit,

wherein the method comprises:

a signal division step of dividing, with the signal divider, an input audio signal into a first audio signal of a first predetermined frequency range and a second audio signal to generate a plurality of different audio signals;

an output step of outputting, with the amplitude adjuster, the first audio signal of the first predetermined frequency range, among the plurality of different audio signals, to the first speaker unit but not to the second speaker unit;

a signal processing step of processing the second audio signal, with the controller unit, so that a phase of the second audio signal in the first predetermined frequency range coincides with a phase of the first audio signal of the first predetermined frequency range output in the output step,

wherein the second speaker unit emits sound based on the second audio signal having been subjected to a phase control in the signal processing step.

3. A speaker array apparatus comprising:

a signal divider that divides an input audio signal into audio signal components of a plurality of frequency ranges to generate a plurality of divided audio signals;

a first speaker unit that emits sound based on one divided audio signal among the plurality of divided audio signals;

a second speaker unit that emits sound based on one divided audio signal among the plurality of divided audio signals;

an amplitude adjuster having a plurality of gain amplifiers that outputs:

a first divided audio signal of a first predetermined frequency range, among the plurality of divided audio signals, to the first speaker unit but not to the second speaker unit;

a second divided audio signal of a second predetermined frequency range, among the plurality of divided audio signals, to the second speaker unit; and

a third divided audio signal, among the plurality of divided audio signals, to the second speaker unit.

4. The speaker array apparatus according to claim 3 , wherein:

a first gain amplifier, among the plurality of gain amplifiers, amplifies and then outputs the first divided audio signal to the first speaker unit,

a second gain amplifier, among the plurality of gain amplifiers, amplifies and then outputs the second divided audio signal to the second speaker unit, and

a third gain amplifier, among the plurality of gain amplifiers, amplifies and then outputs the third divided audio signal to the second speaker unit.

5. The speaker array apparatus according to claim 3 , wherein:

the first predetermined frequency range is equal to the second predetermined frequency range, and

the third divided audio signal has a lower frequency range than the first or second predetermined frequency range.

6. The speaker array apparatus according to claim 3 , wherein:

the amplitude adjuster outputs the second divided signal to the first speaker unit,

the first predetermined frequency range is higher than the second predetermined frequency range.

7. A speaker array apparatus comprising:

a signal divider that divides an input audio signal into a first audio signal of a first predetermined frequency range and a second audio signal to generate a plurality of different audio signals;

a first speaker unit that emits sound based on the first audio signal among the plurality of different audio signals;

a second speaker unit that emits sound based on the second audio signal;

an amplitude adjuster that outputs the first audio signal of the first predetermined frequency range, among the plurality of different audio signals, to the first speaker unit but not to the second speaker unit; and

a controller unit that processes the second audio signal so that a phase of the second audio signal in the first predetermined frequency range coincides with a phase of the first audio signal of the first predetermined frequency range output from the amplitude adjuster,

wherein the second speaker unit emits sound based on the second audio signal having been subjected to a phase control by the controller unit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2008
From: YAMAKAWA, TAKASHI; TAMIYA, KENICHI; KUSHIDA, KOJI; IWAYAMA, KEN
To: YAMAHA CORPORATION
Reel/Frame 020614/0086 →
Priority Claims (1)
JP 2007-039611 · Feb 20, 2007 · national
Continuity (1)
Related Publication 20080199017A1 · Aug 21, 2008