Patent classifications
G01H7/00
PRODUCING A RECORDING FROM SOUND SOURCE DATA BASED ON A SOUND PROFILE
A computer-based method for modifying a sound source. The method includes: accessing, by an acoustic processing facility including at least one processor, a multi-dimensional sound signature of an acoustic environment, wherein the multi-dimensional sound signature comprises a time-based sound reflection sequence for the acoustic environment; and receiving sound source data from a sound input device in a recording space. The method further includes modifying, by the acoustic processing facility, the sound source data based at least in part on the multi-dimensional sound signature to generate a modified sound source data; and recording the modified sound source data on a sound recording device.
PRODUCING A RECORDING FROM SOUND SOURCE DATA BASED ON A SOUND PROFILE
A computer-based method for modifying a sound source. The method includes: accessing, by an acoustic processing facility including at least one processor, a multi-dimensional sound signature of an acoustic environment, wherein the multi-dimensional sound signature comprises a time-based sound reflection sequence for the acoustic environment; and receiving sound source data from a sound input device in a recording space. The method further includes modifying, by the acoustic processing facility, the sound source data based at least in part on the multi-dimensional sound signature to generate a modified sound source data; and recording the modified sound source data on a sound recording device.
Space monitoring apparatus using sound signal and space monitoring method thereof
Proposed is a space monitoring apparatus using a sound signal and a space monitoring method thereof and, more specifically, is a technology in which a space monitoring apparatus using a sound to determine a spatial condition sets a synthesized sound having a plurality of frequency components to utilize the performance of a speaker efficiently and emits the synthesized sound to monitor the spatial condition.
SIGNAL PROCESSING APPARATUS AND SIGNAL PROCESSING METHOD
A signal processing apparatus includes: an obtaining portion configured to obtain an impulse response in a semi-open state in which, among a plurality of acoustic feedback systems, at least one acoustic feedback system is open and at least one acoustic feedback system is closed; and a calculating portion configured to calculate a gain correction amount based on the impulse response that the obtaining portion has obtained and to output a calculated gain correction amount.
Method for processing an audio signal in accordance with a room impulse response, signal processing unit, audio encoder, audio decoder, and binaural renderer
A method for processing an audio signal in accordance with a room impulse response is described. The audio signal is separately processed with an early part and a late reverberation of the room impulse response, and the processed early part of the audio signal and the reverberated signal are combined. A transition from the early part to the late reverberation in the room impulse response is reached when a correlation measure reaches a threshold, the threshold being set dependent on the correlation measure for a selected one of the early reflections in the early part of the room impulse response.
Method for processing an audio signal in accordance with a room impulse response, signal processing unit, audio encoder, audio decoder, and binaural renderer
A method for processing an audio signal in accordance with a room impulse response is described. The audio signal is separately processed with an early part and a late reverberation of the room impulse response, and the processed early part of the audio signal and the reverberated signal are combined. A transition from the early part to the late reverberation in the room impulse response is reached when a correlation measure reaches a threshold, the threshold being set dependent on the correlation measure for a selected one of the early reflections in the early part of the room impulse response.
Directional acoustic sensor and method of detecting distance from sound source using the directional acoustic sensor
A directional acoustic sensor may include a plurality of resonators arranged in different directions; and a processor configured to calculate a time difference between a first signal that is received by the plurality of resonators directly from a sound source (e.g., a speaker) and a second signal that is received by the plurality of resonators from the sound source after being reflected on a wall surface around the sound source, and determine a distance between the sound source and the directional acoustic sensor based on the time difference.
Directional acoustic sensor and method of detecting distance from sound source using the directional acoustic sensor
A directional acoustic sensor may include a plurality of resonators arranged in different directions; and a processor configured to calculate a time difference between a first signal that is received by the plurality of resonators directly from a sound source (e.g., a speaker) and a second signal that is received by the plurality of resonators from the sound source after being reflected on a wall surface around the sound source, and determine a distance between the sound source and the directional acoustic sensor based on the time difference.
ACOUSTIC PRESENCE DETECTOR
One or more embodiments set forth an audio presence detection system, with a memory that includes an acoustic presence detection application, and a processor that executes the acoustic presence detection application. The audio presence detection system receives a first input signal associated with a first speaker, and receives a second input signal associated with a first microphone. The audio presence detection system generates, via an adaptive filter, a first estimation signal based on at least the first input signal and an impulse response associated with a room related to the first speaker and the first microphone. The audio presence detection system computes a first error signal based on the second input signal and the first estimation signal. The audio presence detection system determines that an object is present within a space based on a magnitude associated with the first error signal relative to a first threshold level.
ACOUSTIC PRESENCE DETECTOR
One or more embodiments set forth an audio presence detection system, with a memory that includes an acoustic presence detection application, and a processor that executes the acoustic presence detection application. The audio presence detection system receives a first input signal associated with a first speaker, and receives a second input signal associated with a first microphone. The audio presence detection system generates, via an adaptive filter, a first estimation signal based on at least the first input signal and an impulse response associated with a room related to the first speaker and the first microphone. The audio presence detection system computes a first error signal based on the second input signal and the first estimation signal. The audio presence detection system determines that an object is present within a space based on a magnitude associated with the first error signal relative to a first threshold level.