Patents by Inventor Bruce C. Wheeler
Bruce C. Wheeler 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).
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Patent number: 7945064Abstract: A hearing system has a first device and a second device. The first device acoustically couples to skin of a user of the hearing system and includes a sensor to detect acoustic signals. The second device includes a hearing stimulator arrangement to stimulate hearing of the user in response to the acoustic signals detected with the first device. The first device and second device are each operable to bidirectionally communicate through an ultrasonic communication link comprising at least a portion of the body of the user.Type: GrantFiled: April 9, 2003Date of Patent: May 17, 2011Assignee: Board of Trustees of the University of IllinoisInventors: William D. O'Brien, Jr., Albert S. Feng, Bruce C. Wheeler, Charissa R. Lansing, Herbert Bachler, Robert C. Bilger, Carolyn J. Bilger, legal representative
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Patent number: 7865848Abstract: A method of layout optimization containing parameterized cells includes reading a physical design containing parameterized cells, creating a new version for each of usage of a given parameterized cell. The method optimizes physical design shapes of each new version of the parameterized cell by assigning variables to parameters of the parameterized cell according to a desired objective. Then, the method updates the parameters of each new version of the parameterized cell and replaces each new version of the parameterized cell with an instance of the parameterized cell having updated parameters. The method can optionally adjust physical design shapes based on constraints related to the parameters.Type: GrantFiled: August 28, 2007Date of Patent: January 4, 2011Assignee: International Business Machines CorporationInventors: Veit Gernhoefer, Michael S. Gray, Matthew T. Guzowski, Jason D. Hibbeler, Stephen L. Runyon, Robert F. Walker, Bruce C. Wheeler
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Patent number: 7613309Abstract: System (10) is disclosed including an acoustic sensor array (20) coupled to processor (42). System (10) processes inputs from array (20) to extract a desired acoustic signal through the suppression of interfering signals. The extraction/suppression is performed by modifying the array (20) inputs in the frequency domain with weights selected to minimize variance of the resulting output signal while maintaining unity gain of signals received in the direction of the desired acoustic signal. System (10) may be utilized in hearing aids, voice input devices, surveillance devices, and other applications.Type: GrantFiled: November 7, 2002Date of Patent: November 3, 2009Inventors: Douglas L. Jones, Michael E. Lockwood, Robert C. Bilger, Carolyn T. Bilger, legal representative, Albert S. Feng, Charissa R. Lansing, William D. O'Brien, Bruce C. Wheeler, Mark Elledge, Chen Liu
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Patent number: 7577266Abstract: System (10) is disclosed including an acoustic sensor array (20) coupled to processor (42). System (10) processes inputs from array (20) to extract a desired acoustic signal through the suppression of interfering signals. The extraction/suppression is performed by modifying the array (20) inputs in the frequency domain with weights selected to minimize variance of the resulting output signal while maintaining unity gain of signals received in the direction of the desired acoustic signal. System (10) may be utilized in hearing, cochlear implants, speech recognition, voice input devices, surveillance devices, hands-free telephony devices, remote telepresence or teleconferencing, wireless acoustic sensor arrays, and other applications.Type: GrantFiled: July 11, 2006Date of Patent: August 18, 2009Assignee: The Board of Trustees of the University of IllinoisInventors: Albert S. Feng, Michael E. Lockwood, Douglas L. Jones, Carolyn J. Bilger, legal representative, Charissa R. Lansing, William D. O'Brien, Bruce C. Wheeler, Robert C. Bilger
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Publication number: 20090064061Abstract: A method of layout optimization containing parameterized cells includes reading a physical design containing parameterized cells, creating a new version for each of usage of a given parameterized cell. The method optimizes physical design shapes of each new version of the parameterized cell by assigning variables to parameters of the parameterized cell according to a desired objective. Then, the method updates the parameters of each new version of the parameterized cell and replaces each new version of the parameterized cell with an instance of the parameterized cell having updated parameters. The method can optionally adjust physical design shapes based on constraints related to the parameters.Type: ApplicationFiled: August 28, 2007Publication date: March 5, 2009Inventors: Veit Gernhoefer, Michael S. Gray, Matthew T. Guzowski, Jason D. Hibbeler, Stephen L. Runyon, Robert F. Walker, Bruce C. Wheeler
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Patent number: 7206423Abstract: Disclosed is a hearing aid that includes a first component operable to receive an input and a second component operable to provide an output to at least one ear of a user of the hearing aid. The first component and the second component are electrically coupled together by a closed electrical circuit including at least one electrical conduction pathway formed by skin of the user between the first component and the second component. An electrical signal is transmitted from the first component to the second component with the closed electrical circuit. Communication between the first and second components can be one-way or two-way.Type: GrantFiled: May 10, 2000Date of Patent: April 17, 2007Assignee: Board of Trustees of University of IllinoisInventors: Albert S. Feng, Douglas Jones, Bruce C. Wheeler, Robert C. Bilger, Charissa R. Lansing, William D. O'Brien
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Patent number: 7076072Abstract: System (10) is disclosed including an acoustic sensor array (20) coupled to processor (42). System (10) processes inputs from array (20) to extract a desired acoustic signal through the suppression of interfering signals. The extraction/suppression is performed by modifying the array (20) inputs in the frequency domain with weights selected to minimize variance of the resulting output signal while maintaining unity gain of signals received in the direction of the desired acoustic signal. System (10) may be utilized in hearing, cochlear implants, speech recognition, voice input devices, surveillance devices, hands-free telephony devices, remote telepresence or teleconferencing, wireless acoustic sensor arrays, and other applications.Type: GrantFiled: April 9, 2003Date of Patent: July 11, 2006Assignee: Board of Trustees for the University of IllinoisInventors: Albert S. Feng, Michael E. Lockwood, Douglas L. Jones, Carolyn J. Bilger, legal representative, Charissa R. Lansing, William D. O'Brien, Bruce C. Wheeler, Robert C. Bilger, deceased
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Patent number: 6987856Abstract: A desired acoustic signal is extracted from a noisy environment by generating a signal representative of the desired signal with a processor. The processor receives aural signals from two sensors each at a different location. The two inputs to the processor are converted from analog to digital format and then submitted to a discrete Fourier transform process to generate discrete spectral signal representations. The spectral signals are delayed by a number of time intervals in a dual delay line to provide a number of intermediate signals, each corresponding to a different spatial location relative to the two sensors. Locations of the noise source and the desired source are determined and the spectral content of the desired signal is determined from the intermediate signal corresponding to the noise source locations. Inverse transformation of the selected intermediate signal followed by digital to analog conversion provides an output signal representative of the desired signal.Type: GrantFiled: November 16, 1998Date of Patent: January 17, 2006Assignee: Board of Trustees of the University of IllinoisInventors: Albert S. Feng, Chen Liu, Robert C. Bilger, Douglas L. Jones, Charissa R. Lansing, William D. O'Brien, Bruce C. Wheeler
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Patent number: 6978159Abstract: A desired acoustic signal is extracted from a noisy environment by generating a signal representative of the desired signal with processor (30). Processor (30) receives aural signals from two sensors (22, 24) each at a different location. The two inputs to processor (30) are converted from analog to digital format and then submitted to a discrete Fourier transform process to generate discrete spectral signal representations. The spectral signals are delayed to provide a number of intermediate signals, each corresponding to a different spatial location relative to the two sensors. Locations of the noise source and the desired source, and the spectral content of the desired signal are determined from the intermediate signal corresponding to the noise source locations. Inverse transformation of the selected intermediate signal followed by digital to analog conversion provides an output signal representative of the desired signal with output device (90).Type: GrantFiled: March 13, 2001Date of Patent: December 20, 2005Assignee: Board of Trustees of the University of IllinoisInventors: Albert S. Feng, Chen Liu, Douglas L. Jones, Robert C. Bilger, Charissa R. Lansing, William D. O'Brien, Bruce C. Wheeler
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Publication number: 20040202339Abstract: A hearing system has a first device and a second device. The first device acoustically couples to skin of a user of the hearing system and includes a sensor to detect acoustic signals. The second device includes a hearing stimulator arrangement to stimulate hearing of the user in response to the acoustic signals detected with the first device. The first device and second device are each operable to bidirectionally communicate through an ultrasonic communication link comprising at least a portion of the body of the user.Type: ApplicationFiled: April 9, 2003Publication date: October 14, 2004Inventors: William D. O'Brien,, Albert S. Feng, Bruce C. Wheeler, Charissa R. Lansing, Herbert Bachler, Robert C. Bilger, Carolyn J. Bilger
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Publication number: 20030138116Abstract: System (10) is disclosed including an acoustic sensor array (20) coupled to processor (42). System (10) processes inputs from array (20) to extract a desired acoustic signal through the suppression of interfering signals. The extraction/suppression is performed by modifying the array (20) inputs in the frequency domain with weights selected to minimize variance of the resulting output signal while maintaining unity gain of signals received in the direction of the desired acoustic signal. System (10) may be utilized in hearing aids, voice input devices, surveillance devices, and other applications.Type: ApplicationFiled: November 7, 2002Publication date: July 24, 2003Inventors: Douglas L. Jones, Michael E. Lockwood, Robert C. Bilger, Albert S. Feng, Charissa R. Lansing, William D. O'Brien, Bruce C. Wheeler, Mark Elledge, Chen Liu, Carolyn T. Bilger
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Publication number: 20010031053Abstract: A desired acoustic signal is extracted from a noisy environment by generating a signal representative of the desired signal with processor (30). Processor (30) receives aural signals from two sensors (22, 24) each at a different location. The two inputs to processor (30) are converted from analog to digital format and then submitted to a discrete Fourier transform process to generate discrete spectral signal representations. The spectral signals are delayed to provide a number of intermediate signals, each corresponding to a different spatial location relative to the two sensors. Locations of the noise source and the desired source, and the spectral content of the desired signal are determined from the intermediate signal corresponding to the noise source locations. Inverse transformation of the selected intermediate signal followed by digital to analog conversion provides an output signal representative of the desired signal with output device (90).Type: ApplicationFiled: March 13, 2001Publication date: October 18, 2001Inventors: Albert S. Feng, Chen Liu, Douglas L. Jones, Robert C. Bilger, Charissa R. Lansing, William D. O'Brien, Bruce C. Wheeler
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Patent number: 6222927Abstract: A desired acoustic signal is extracted from a noisy environment by generating a signal representative of the desired signal with a processor for a hearing aid device. The processor receives binaural signals from two microphones at different locations. The binaural inputs to the processor are converted from analog to digital format and then submitted to a discrete Fourier transform process to generate discrete spectral signal representations. The spectral signals are delayed by a number of time intervals in a dual delay line to provide a number of intermediate signals, each corresponding to a different position relative to a desired signal source. Location of the noise source is determined and the spectral content of the desired signal is determined from the intermediate signal corresponding to the noise source location. Inverse transformation of the selected intermediate signal followed by digital to analog conversion provides an output signal representative of the desired signal.Type: GrantFiled: June 19, 1996Date of Patent: April 24, 2001Assignee: The University of IllinoisInventors: Albert S. Feng, Charissa R. Lansing, Chen Liu, William O'Brien, Bruce C. Wheeler
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Patent number: 4017782Abstract: A DC to DC Converter is disclosed which uses a simple oscillator with a variable duty cycle to maintain a constant energy input into the primary inductance of an output transformer irrespective of the input voltage to the converter.Type: GrantFiled: November 7, 1975Date of Patent: April 12, 1977Assignee: General Electric CompanyInventor: Bruce C. Wheeler