Audio system

US2016111110A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016111110-A1
Application numberUS-201514855094-A
CountryUS
Kind codeA1
Filing dateSep 15, 2015
Priority dateOct 15, 2014
Publication dateApr 21, 2016
Grant date

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Abstract

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An audio system is described including an audio processor, an amplifier and a speaker and a distortion estimator. The distortion estimator calculates at least one of an expected response of the amplifier to an audio signal and an expected response of the loudspeaker to an audio signal. The distortion estimator is operable to generate a distortion prediction signal determined by a difference between an expected non-linear response of at least one of the loudspeaker and the amplifier and an expected linear response of at least one of the loudspeaker and the amplifier. A controller coupled to the audio processor and a control input of the audio processor may vary the operating parameters of the audio processor depending on the estimated distortion.

First claim

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1 . An audio system comprising: an audio processor for receiving an audio input signal and outputting an audio output signal; an amplifier coupled to the audio processor; a loudspeaker coupled to the amplifier; a distortion estimator configured and arranged to determine an expected response of the amplifier and/or the loudspeaker to at least one of the audio input signal and the audio output signal; a controller coupled to the distortion estimator and the audio processor; wherein the distortion estimator is operable to generate a distortion prediction signal in dependence of a difference between an expected non-linear response of the loudspeaker and/or the amplifier and an expected linear response of the loudspeaker and/or the amplifier; and wherein the controller is configured and arranged to vary the operating parameters of the audio processor in dependence of the generated distortion prediction signal. 2 . The audio system of claim 1 , wherein the operating parameters comprise at least one of a gain, a compression threshold and a compression ratio. 3 . The audio system of claim 1 , wherein the controller comprises a perceptual model and wherein the controller is operable to assign a lower weighting factor to frequency components of the distortion prediction signal that are of lower perceptual relevance. 4 . The audio system of claim 3 , wherein the perceptual model comprises an A-weighting model. 5 . The audio system of claim 1 , wherein the distortion estimator comprises a linear loudspeaker response estimator, a non-linear loudspeaker response estimator and a comparator coupled to the linear loudspeaker response estimator and the non-linear loudspeaker response estimator and wherein the comparator is operable to output a difference between the estimated linear loudspeaker response and the estimated non-linear loudspeaker response. 6 . The audio system of claim 1 , wherein the audio processor is configured to apply a time-varying gain to an audio signal and the controller is operable to determine a temporally averaged distortion prediction signal value and to vary the time-varying gain in dependence of the temporally averaged distortion prediction signal value. 7 . The audio system of claim 1 , wherein the audio processor comprises a multi-band processor and wherein the controller is operable to apply different gains to different frequency bands. 8 . The audio system of claim 1 , wherein the audio processor comprises a dynamic range controller. 9 . The audio system of claim 1 , further comprising a microphone coupled to the audio distortion estimator and wherein the audio distortion estimator is operable to adapt the expected response of at least one of the loudspeaker and the amplifier in response to an acoustic input. 10 . The audio system of claim 1 , further comprising a current sensor coupled to the loudspeaker and the distortion estimator and wherein the distortion estimator is operable to adapt the expected linear and non-linear response of the loudspeaker in dependence on the current flowing through the coil of the loudspeaker. 11 . The audio system of claim 1 , wherein the distortion estimator is configured to generate the distortion prediction signal in dependence of a difference between the expected non-linear response of the loudspeaker and the amplifier and the expected linear response of the loudspeaker and the amplifier; and wherein the controller is configured and arranged to vary the operating parameters of the audio processor in dependence of the generated distortion prediction signal. 12 . The audio system of claim 1 , wherein the distortion estimator is further configured and arranged to generate a further distortion prediction signal in dependence of a difference between the predicted linear response of the loudspeaker to the audio input signal and the predicted linear response of the loudspeaker to the audio output signal; and the controller is configured and arranged to vary the operating parameters of the audio processor in dependence of the generated distortion prediction signal and the further distortion prediction signal. 13 . The audio system of claim 11 , wherein the controller is further operable to determine a temporal average of the distortion prediction signal level and the further distortion prediction signal level and to vary the operating parameters of the audio processor in dependence of the temporal average of the distortion prediction signal level and the temporal average of the further distortion prediction signal level. 14 . The audio system of claim 12 , wherein the controller is configured and arranged to reduce the dynamic range threshold of the audio processor when the temporal average of the further distortion signal is greater than the temporal average of the distortion signal. 15 . The audio system of claim 1 , wherein the audio processor is configured to apply a domain transform to the audio input signal prior to processing the signal and to apply an inverse domain transform prior to outputting the audio signal.

Assignees

Inventors

Classifications

  • frequency-dependent volume compression or expansion, e.g. multiple-band systems (H03G9/10, H03G9/18 take precedence) · CPC title

  • H04R3/04Primary

    for correcting frequency response · CPC title

  • by changing the amplitude · CPC title

  • Damping circuit arrangements for transducers, e.g. motional feedback circuits · CPC title

  • Automatic control ({H03G3/005 takes precedence;} combined with volume compression or expansion H03G7/00) · CPC title

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What does patent US2016111110A1 cover?
An audio system is described including an audio processor, an amplifier and a speaker and a distortion estimator. The distortion estimator calculates at least one of an expected response of the amplifier to an audio signal and an expected response of the loudspeaker to an audio signal. The distortion estimator is operable to generate a distortion prediction signal determined by a difference bet…
Who is the assignee on this patent?
Nxp Bv
What technology area does this patent fall under?
Primary CPC classification H04R3/04. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Apr 21 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).