Patents by Inventor Sunil Bharitkar

Sunil Bharitkar has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 8218789
    Abstract: A system and method for minimizing the complex phase interaction between non-coincident subwoofer and satellite speakers for improved magnitude response control in a cross-over region. An all-pass filter is cascaded with bass-management filters in at least one filter channel, a[1d preferably all-pass filters are cascaded in each satellite speaker channel. Pole angles and magnitudes for the all-pass filters are recursively calculated to minimize phase incoherence. A step of selecting an optimal cross-over frequency may be performed in conjunction with the all-pass filtering, and is preferably used to select an optimal cross-over frequency prior to determining all-pass filter coefficients.
    Type: Grant
    Filed: April 1, 2010
    Date of Patent: July 10, 2012
    Assignee: Audyssey Laboratories, Inc.
    Inventors: Sunil Bharitkar, Chris Kyriakakis
  • Publication number: 20120106742
    Abstract: Methods, devices and computer program products facilitate the generation of high quality audio content. The audio content includes upper harmonics that are associated with a bass band of frequencies in order to enhance the perception of bass audio components that cannot be produced by the audio speakers. The upper harmonics are generated and processed in such a way that reduces the computational and memory requirements of the audio processing operations. The processed upper harmonics are combined with the original audio that are properly delayed to enhance the quality of the audio content. This Abstract is provided for the sole purpose of complying with the Abstract requirement rules that allow a reader to quickly ascertain the disclosed subject matter. Therefore, it is to be understood that it should not be used to interpret or limit the scope or the meaning of the claims.
    Type: Application
    Filed: October 28, 2010
    Publication date: May 3, 2012
    Inventors: Sunil Bharitkar, Nathan Dahlin, Ismael Hamad Nawfal, Chris Kyriakakis
  • Patent number: 8077880
    Abstract: A combined multirate-based Finite Impulse Response (FIR) filter equalization technique combines a low-order FIR equalization filter operating at a lower rate for equalization of a loudspeaker-room response at low frequencies, and a complementary low-order minimum-phase FIR equalization filter operating at a higher rate for equalization of the loudspeaker-room response at higher frequencies. The design of two complementary band filters for separately performing low and high frequency equalization, keeps the system delay at a minimum while maintaining excellent equalization performance. Splicing between the two equalization filters, for maintaining a flat magnitude response in the transition region of the two complementary filters, is done automatically through level adjustment of one equalization filter relative to the other. The present invention achieves excellent equalization at low filter orders and hence reduced computational complexity.
    Type: Grant
    Filed: May 11, 2007
    Date of Patent: December 13, 2011
    Assignee: Audyssey Laboratories, Inc.
    Inventors: Sunil Bharitkar, Chris Kyriakakis
  • Patent number: 8005228
    Abstract: A system and a methods for correcting, simultaneously at multiple-listener positions, distortions introduced by the acoustical characteristics includes warping room responses, intelligently weighing the warped room acoustical responses to form a weighted response, a low order spectral fitting to the weighted response, forming a warped filter from the low order spectral fit, and unwarping the warped filter to form the room acoustical correction filter.
    Type: Grant
    Filed: April 10, 2009
    Date of Patent: August 23, 2011
    Assignee: Audyssey Laboratories, Inc.
    Inventors: Sunil Bharitkar, Chris Kyriakakis
  • Publication number: 20100310092
    Abstract: A system and method provide at least a single stage optimization process which maximizes the flatness of the net subwoofer and satellite speaker response in and around a cross-over region. A first stage determines an optimal cross-over frequency by minimizing an objective function in a region around the cross-over frequency. Such objective function measures the variation of the magnitude response in the cross-over region. An optional second stage applies all-pass filtering to reduce incoherent addition of signals from different speakers in the cross-over region. The all-pass filters are preferably included in signal processing for the satellite speakers, and provide a frequency dependent phase adjustment to reduce incoherency between the center and left and right speakers and the subwoofer. The all-pass filters are derived using a recursive adaptive algorithm.
    Type: Application
    Filed: August 20, 2010
    Publication date: December 9, 2010
    Inventors: Sunil Bharitkar, Chris Kyriakakis, Philip Hilmes, Andrew Dow Turner
  • Patent number: 7826626
    Abstract: A system and method provide at least a single stage optimization process which maximizes the flatness of the net subwoofer and satellite speaker response in and around a cross-over region. A first stage determines an optimal cross-over frequency by minimizing an objective function in a region around the cross-over frequency. Such objective function measures the variation of the magnitude response in the cross-over region. An optional second stage applies all-pass filtering to reduce incoherent addition of signals from different speakers in the cross-over region. The all-pass filters are preferably included in signal processing for the satellite speakers, and provide a frequency dependent phase adjustment to reduce incoherency between the center and left and right speakers and the subwoofer. The all-pass filters are derived using a recursive adaptive algorithm.
    Type: Grant
    Filed: September 7, 2005
    Date of Patent: November 2, 2010
    Assignee: Audyssey Laboratories, Inc.
    Inventors: Sunil Bharitkar, Chris Kyriakakis, Philip Hilmes, Andrew Dow Turner
  • Patent number: 7769183
    Abstract: A system and a method for correcting, simultaneously at multiple-listener positions, distortions introduced by the acoustical characteristics includes intelligently weighing the room acoustical responses to form a room acoustical correction filter.
    Type: Grant
    Filed: June 20, 2003
    Date of Patent: August 3, 2010
    Assignee: University of Southern California
    Inventors: Sunil Bharitkar, Chris Kyriakakis
  • Publication number: 20100189282
    Abstract: A system and method for minimizing the complex phase interaction between non-coincident subwoofer and satellite speakers for improved magnitude response control in a cross-over region. An all-pass filter is cascaded with bass-management filters in at least one filter channel, and preferably all-pass filters are cascaded in each satellite speaker channel. Pole angles and magnitudes for the all-pass filters are recursively calculated to minimize phase incoherence. A step of selecting an optimal cross-over frequency may be performed in conjunction with the all-pass filtering, and is preferably used to select an optimal cross-over frequency prior to determining all-pass filter coefficients.
    Type: Application
    Filed: April 1, 2010
    Publication date: July 29, 2010
    Inventors: Sunil Bharitkar, Chris Kyriakakis
  • Patent number: 7720237
    Abstract: A system and method for minimizing the complex phase interaction between non-coincident subwoofer and satellite speakers for improved magnitude response control in a cross-over region. An all-pass filter is cascaded with bass-management filters in at least one filter channel, and preferably all-pass filters are cascaded in each satellite speaker channel. Pole angles and magnitudes for the all-pass filters are recursively calculated to minimize phase incoherence. A step of selecting an optimal cross-over frequency may be performed in conjunction with the all-pass filtering, and is preferably used to select an optimal cross-over frequency prior to determining all-pass filter coefficients.
    Type: Grant
    Filed: September 7, 2005
    Date of Patent: May 18, 2010
    Assignee: Audyssey Laboratories, Inc.
    Inventors: Sunil Bharitkar, Chris Kyriakakis
  • Publication number: 20090202082
    Abstract: A system and a methods for correcting, simultaneously at multiple-listener positions, distortions introduced by the acoustical characteristics includes warping room responses, intelligently weighing the warped room acoustical responses to form a weighted response, a low order spectral fitting to the weighted response, forming a warped filter from the low order spectral fit, and unwarping the warped filter to form the room acoustical correction filter.
    Type: Application
    Filed: April 10, 2009
    Publication date: August 13, 2009
    Inventors: Sunil Bharitkar, Chris Kyriakakis
  • Patent number: 7567675
    Abstract: A system and a method for correcting, simultaneously at multiple-listener positions, distortions introduced by the acoustical characteristics includes warping room responses, intelligently weighing the warped room acoustical responses to form a weighted response, a low order spectral fitting to the weighted response, forming a warped filter from the low order spectral fit, and unwarping the warped filter to form the room acoustical correction filter.
    Type: Grant
    Filed: November 3, 2003
    Date of Patent: July 28, 2009
    Assignee: Audyssey Laboratories, Inc.
    Inventors: Sunil Bharitkar, Chris Kyriakakis
  • Publication number: 20080279318
    Abstract: A combined multirate-based Finite Impulse Response (FIR) filter equalization technique combines a low-order FIR equalization filter operating at a lower rate for equalization of a loudspeaker-room response at low frequencies, and a complementary low-order minimum-phase FIR equalization filter operating at a higher rate for equalization of the loudspeaker-room response at higher frequencies. The design of two complementary band filters for separately performing low and high frequency equalization, keeps the system delay at a minimum while maintaining excellent equalization performance. Splicing between the two equalization filters, for maintaining a flat magnitude response in the transition region of the two complementary filters, is done automatically through level adjustment of one equalization filter relative to the other. The present invention achieves excellent equalization at low filter orders and hence reduced computational complexity.
    Type: Application
    Filed: May 11, 2007
    Publication date: November 13, 2008
    Inventors: Sunil Bharitkar, Chris Kyriakakis
  • Publication number: 20080279401
    Abstract: A method for stereo expansion includes a step to remove the effects of actual relative speaker to listener positioning and head shadow and a step to introduce an artificial effect based on a desired virtual relative speaker to listener positioning using the inter-aural delay and the head-shadow models for the virtual speakers at desired angles relative to the listener thereby creating the impression of a widened and centered sound stage and an immersive listening experience. Known methods drown out vocals and add mid-range coloration thereby defeating equalization. The present method includes the integration of a novel binaural listening model and speaker-room equalization techniques to provide widening while not defeating equalization.
    Type: Application
    Filed: May 7, 2008
    Publication date: November 13, 2008
    Inventors: SUNIL BHARITKAR, CHRIS KYRIAKAKIS
  • Publication number: 20080205667
    Abstract: A method for determining coefficients of a family of cascaded second order Infinite Impulse Response (IIR) parametric filters used for equalizing a room response. The method includes determining parameters of each IIR parametric filter from poles or roots of a reasonably high-order Linear Predictive Coding (LPC) model. The LPC model is able to accurately model the low-frequency room response modes providing better equalization of loudspeaker and room acoustics, particularly at the low frequencies. Advantages of the method include fast and efficient computation of the LPC model using a Levinson-Durbin recursion to solve the normal equations that arise from the least squares formulation. Due to possible band interactions between the cascaded IIR parametric filters, the method further includes optimizing the Q value of each filter to better equalize the room response.
    Type: Application
    Filed: February 23, 2007
    Publication date: August 28, 2008
    Inventors: Sunil Bharitkar, Yun Zhang, Chris Kyriakakis
  • Publication number: 20060062404
    Abstract: A system and method provide at least a single stage optimization process which maximizes the flatness of the net subwoofer and satellite speaker response in and around a cross-over region. A first stage determines an optimal cross-over frequency by minimizing an objective function in a region around the cross-over frequency. Such objective function measures the variation of the magnitude response in the cross-over region. An optional second stage applies all-pass filtering to reduce incoherent addition of signals from different speakers in the cross-over region. The all-pass filters are preferably included in signal processing for the satellite speakers, and provide a frequency dependent phase adjustment to reduce incoherency between the center and left and right speakers and the subwoofer. The all-pass filters are derived using a recursive adaptive algorithm.
    Type: Application
    Filed: September 7, 2005
    Publication date: March 23, 2006
    Inventors: Sunil Bharitkar, Chris Kyriakakis
  • Patent number: 7016509
    Abstract: The present invention relates to an auto loudness circuit for performing loudness compensation automatically depending on the signal level. When the signal level decreases, loudness compensation is slowly introduced and as the signal level increases, loudness compensation is quickly removed. To do so, the auto loudness circuit utilizes a filter circuit with the characteristic of a first order bass boost. The filter circuit maintains a corner frequency which is proportional to the inverse of audio level in order to mimic the Fletcher-Munson curves. Because the circuit employs a capacitance-multiplier with a first order resistance capacitance filter, the bass boost is inversely proportional to the signal level. Thus, bass boost is achieved automatically as the program content changes so that the listener is unaware of significant changes in program material as signal levels change either through increase or decrease in volume, crescendo or new material.
    Type: Grant
    Filed: September 8, 2000
    Date of Patent: March 21, 2006
    Assignee: Harman International Industries, inc.
    Inventors: Sunil Bharitkar, Timothy Shuttleworth
  • Publication number: 20060056646
    Abstract: A system and method for minimizing the complex phase interaction between non-coincident subwoofer and satellite speakers for improved magnitude response control in a cross-over region. An all-pass filter is cascaded with bass-management filters in at least one filter channel, and preferably all-pass filters are cascaded in each satellite speaker channel. Pole angles and magnitudes for the all-pass filters are recursively calculated to minimize phase incoherence. A step of selecting an optimal cross-over frequency may be performed in conjunction with the all-pass filtering, and is preferably used to select an optimal cross-over frequency prior to determining all-pass filter coefficients.
    Type: Application
    Filed: September 7, 2005
    Publication date: March 16, 2006
    Inventors: Sunil Bharitkar, Chris Kyriakakis
  • Publication number: 20060050891
    Abstract: A method for determining the polarity of a loudspeaker including measuring a loudspeaker-room acoustical response at a position with a microphone and filtering the loudspeaker-room acoustical response for increasing the signal to noise ratio of a first peak corresponding to direct sound in the loudspeaker-room acoustical response, wherein the sign of a sample in the first peak in the filtered loudspeaker-room acoustical response indicates the polarity of the loudspeaker.
    Type: Application
    Filed: September 7, 2004
    Publication date: March 9, 2006
    Inventor: Sunil Bharitkar
  • Publication number: 20050094821
    Abstract: A system and a method for correcting, simultaneously at multiple-listener positions, distortions introduced by the acoustical characteristics includes warping room responses, intelligently weighing the warped room acoustical responses to form a weighted response, a low order spectral fitting to the weighted response, forming a warped filter from the low order spectral fit, and unwarping the warped filter to form the room acoustical correction filter.
    Type: Application
    Filed: November 3, 2003
    Publication date: May 5, 2005
    Inventors: Sunil Bharitkar, Chris Kyriakakis
  • Publication number: 20040109570
    Abstract: A system and method for producing an audio output directed to a listening environment having at least two listening positions. Based upon the location of a loudspeaker for the purpose of producing an audio output and the physical location of the listening positions, the audio output would be preprocessed by one or more filters whose coefficients would maximize the signal heard by a listener in one of the listening positions and constrained by a listener in another position, thereby eliminating or minimizing the audio output heard by a listener in one of the other positions.
    Type: Application
    Filed: June 20, 2003
    Publication date: June 10, 2004
    Inventors: Sunil Bharitkar, Chris Kyriakakis