IP Library › Granted Patent US 10,559,295
Granted Patent B1
US 10,559,295 · App. 16/213,993 · Granted Feb 11, 2020

Artificial reverberator room size control

Inventor: Jonathan S. Abel (Menlo Park, CA)
G10K15/10H04S7/305H04S2420/01
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Quick Facts
Patent No.
US 10,559,295
App. No.
16/213,993
Granted
Feb 11, 2020
Kind
B1
Abstract

In music recording and virtual reality applications, it is desired to control the perceived size of a synthesized acoustic space. In an embodiment, a room size parameter is used to modify characteristics of an artificial reverberator so as to affect a listener's sense of the size of the acoustic space. Properties of the reverberation related to perceived room size such as decay time and equalization are adjusted interactively.

Claims (35)

1. An artificial reverberator comprising:

an input for accepting a nominal room impulse response;

an input for accepting a perceived room size control, wherein the perceived room size control specifies a perceived room size that is different than a nominal room size associated with the nominal room impulse response; and

a convolution operation with a processing room impulse response, wherein the processing room impulse response is derived by resampling a generating room impulse response related to the nominal impulse response according to the perceived room size control.

2. The artificial reverberator of claim 1 , wherein the generating room impulse response is the nominal room impulse response, augmented to have high-frequency or low-frequency content that may appear in the audio band under the resampling.

3. The artificial reverberator of claim 1 , in which the generating room impulse has decay times that are manipulated versions of nominal impulse response decay times, wherein the manipulation is affected by the room size control.

4. The artificial reverberator of claim 1 , wherein the processing room impulse has decay times that are adjusted according to the room size control.

5. A method for artificial reverberation comprising:

identifying a nominal room impulse response;

identifying a perceived room size control, wherein the perceived room size control specifies a perceived room size that is different than a nominal room size associated with the nominal room impulse response;

forming a processing room impulse response by adjusting the nominal room impulse response according to the perceived room size control; and

convolving a signal with the processing room impulse response.

6. The method for artificial reverberation of claim 5 further comprising resampling in forming the processing room impulse response.

7. The method for artificial reverberation of claim 5 further comprising adjusting reverberation time in a band of frequencies according to the perceived room size control in forming the processing room impulse response.

8. A method for adjusting a perceived room size of an artificial reverberator comprising:

identifying a nominal reverberation decay time;

identifying a perceived room size control, wherein the perceived room size control specifies the perceived room size that is different than a nominal room size associated with the nominal room reverberation decay time;

identifying a decay time associated with air absorption; and

forming a desired reverberation time by adjusting the nominal reverberation decay time according to the perceived room size control and taking into account the air absorption decay time.

9. The method of claim 8 further comprising:

forming implicitly or directly an estimate of the nominal reverberation decay time not attributable to air absorption.

10. A system for artificial reverberation comprising

a perceived room size control, wherein the perceived room size control specifies a perceived room size that is different than a nominal room size, and

a network of delay lines, each having a nominal length associated with the nominal room size, and wherein the length of at least one of the delay lines is adjusted from the nominal length according to the perceived room size control.

11. The system for artificial reverberation according to claim 10 further comprising

means to accept a nominal reverberation time; and

a feedback filter associated with at least one of the delay lines, wherein the feedback filter is adjusted according to the perceived room size control to substantially achieve a reverberation time determined by the perceived room size control and the nominal reverberation time.

12. The system of claim 11 further comprising:

feedback paths associated with outputs of at least two of the delay lines comprising the network and inputs of the at least two delay lines, wherein an amount of feedback from one of the at least two delay lines to another one of the at least two delay lines is adjusted according to the room size control.

13. A system for artificial reverberation comprising:

a perceived room size control, wherein the perceived room size control specifies a perceived room size that is different than a nominal room size associated with a nominal room impulse response,

a set of resonant filters representing modes of a room, the set of resonant filters being derived from the nominal room impulse response, each resonant filter characterized by a mode frequency and mode decay rate, and

a means to adjust the mode decay rate associated with one of the resonant filters in response to the perceived room size control.

14. The system of claim 13 further comprising:

a means to adjust the mode frequency associated with one of the resonant filters in response to the perceived room size control.

Continuity (1)
Provisional Application 62596656 · Dec 8, 2017
Cited By (5)
US 12,192,733 US 12,198,715 US 12,242,972 US 12,347,304 US 12,432,519