Abstract:
An estimated system gain spectrum of an acoustic system is generated, and updated in real-time to respond to changes in the acoustic system. Peak gains in the estimated system gain spectrum are tracked as the estimated system gain spectrum is updated. Based on the tracking, at least one frequency at which the estimated system gain spectrum is currently exhibiting a peak gain is identified. Based on the identification of the at least one frequency, an audio equalizer is controlled to apply, to a first speech containing signal to be played out via an audio output device of the audio device and/or to a second speech containing signal received via an audio input device of the audio device, an equalization filter to reduce the level of that signal at the identified frequency. The equalization filter is applied continuously throughout intervals of both speech activity and speech inactivity in that signal.
Abstract:
An example method may involve a device determining a first loudness representation based on a first equalization setting applied to a representation of average music. The device may also determine a second loudness representation based on a second equalization setting applied to the representation of average music. The device may also determine a loudness adjustment factor based on the first and second loudness representations, and then cause a playback device to play back media based on the second equalization setting and the determined loudness adjustment factor.
Abstract:
A process and system for generating three dimensional sound conferencing includes generating a virtual map with a plurality of positions, each participant selecting one of the positions, determining a direction from each position to each other position on the map, determining a distance from each position to each other position on the map, receiving sound from each participant, mixing the received sound, transforming the mixed sound into binaural audio, and directing the binaural audio sound to each participant via a speaker associated with the virtual position of the speaking participant. The result is a clarified sound that gives to the listening participant a sense of where the speaking participant is positioned relative to the listening participant.
Abstract:
Methods and apparatus for a communication system having microphones and loudspeakers to determine a noise and speech level estimate for a transformed signal, determine a SNR from the noise and speech level estimates, and determine a gain for the transformed signal to achieve a selected SNR range at a given position. In one embodiment, the gain is determined by adapting an actual gain to follow a target gain, wherein the target gain is adjusted to achieve the selected SNR range.
Abstract:
A process and system for generating three dimensional sound conferencing includes generating a virtual map with a plurality of positions, each participant selecting one of the positions, determining a direction from each position to each other position on the map, determining a distance from each position to each other position on the map, receiving sound from each participant, mixing the received sound, transforming the mixed sound into binaural audio, and directing the binaural audio sound to each participant via a speaker associated with the virtual position of the speaking participant. The result is a clarified sound that gives to the listening participant a sense of where the speaking participant is positioned relative to the listening participant.
Abstract:
An electronic device configured to process an audio signal output from a microphone, and an audio processing method thereof are provided. The electronic device includes at least one speaker; at least one microphone; a signal processor configured to process an audio signal being output from the microphone; and a processor configured to control the signal processor to determine first information regarding an output of the speaker by analyzing at least one speaker input signal being input into the speaker and to determine second information regarding a sound source being input into the microphone by analyzing at least one audio signal being output from the microphone, and to process the at least one audio signal according to at least one of the first and second information.
Abstract:
An example method may involve a device determining a first loudness representation based on a first equalization setting applied to a representation of average music. The device may also determine a second loudness representation based on a second equalization setting applied to the representation of average music. The device may also determine a loudness adjustment factor based on the first and second loudness representations, and then cause a playback device to play back media based on the second equalization setting and the determined loudness adjustment factor.