Patents by Inventor Steven L. Potts

Steven L. Potts 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).

  • Publication number: 20220337927
    Abstract: A system includes a speaker enclosure, a speaker in the speaker enclosure, and a meta cell. The meta cell includes an opening on a first end connected to the speaker enclosure, and a closed cavity on a second end.
    Type: Application
    Filed: May 21, 2021
    Publication date: October 20, 2022
    Applicant: Plantronics, Inc.
    Inventors: Wayne Stanley FOLETTA, Steven L. POTTS
  • Patent number: 11228834
    Abstract: The amount of far-field noise transmitted by a primary communication device in an open-plan office environment is reduced by defining an acoustic perimeter of reference microphones around the primary device. Reference microphones generate a reference audio input including far-field noise in the proximity of the primary device. The primary device generates a main audio input including the voice of the primary speaker as well as background noise. Reference audio input is compared to main audio input to identify the background noise portion of the main audio signal. A noise reduction algorithm suppresses the identified background noise in the main audio signal. The one or more reference microphones defining the acoustic perimeter may be included in separate microphone devices placed in proximity to the main desktop phone, microphones within other nearby desktop telephone devices, or a combination of both types of devices.
    Type: Grant
    Filed: October 30, 2020
    Date of Patent: January 18, 2022
    Assignee: Polycom, Inc.
    Inventors: Kwan K. Truong, Peter L. Chu, Steven L. Potts, Eric Elias
  • Publication number: 20210136490
    Abstract: The amount of far-field noise transmitted by a primary communication device in an open-plan office environment is reduced by defining an acoustic perimeter of reference microphones around the primary device. Reference microphones generate a reference audio input including far-field noise in the proximity of the primary device. The primary device generates a main audio input including the voice of the primary speaker as well as background noise. Reference audio input is compared to main audio input to identify the background noise portion of the main audio signal. A noise reduction algorithm suppresses the identified background noise in the main audio signal. The one or more reference microphones defining the acoustic perimeter may be included in separate microphone devices placed in proximity to the main desktop phone, microphones within other nearby desktop telephone devices, or a combination of both types of devices.
    Type: Application
    Filed: October 30, 2020
    Publication date: May 6, 2021
    Inventors: Kwan K. Truong, Peter L. Chu, Steven L. Potts, Eric Elias
  • Patent number: 10856077
    Abstract: The amount of far-field noise transmitted by a primary communication device in an open-plan office environment is reduced by defining an acoustic perimeter of reference microphones around the primary device. Reference microphones generate a reference audio input including far-field noise in the proximity of the primary device. The primary device generates a main audio input including the voice of the primary speaker as well as background noise. Reference audio input is compared to main audio input to identify the background noise portion of the main audio signal. A noise reduction algorithm suppresses the identified background noise in the main audio signal. The one or more reference microphones defining the acoustic perimeter may be included in separate microphone devices placed in proximity to the main desktop phone, microphones within other nearby desktop telephone devices, or a combination of both types of devices.
    Type: Grant
    Filed: July 13, 2020
    Date of Patent: December 1, 2020
    Assignee: Polycom, Inc.
    Inventors: Kwan K. Truong, Peter L. Chu, Steven L. Potts, Eric Elias
  • Publication number: 20200344546
    Abstract: The amount of far-field noise transmitted by a primary communication device in an open-plan office environment is reduced by defining an acoustic perimeter of reference microphones around the primary device. Reference microphones generate a reference audio input including far-field noise in the proximity of the primary device. The primary device generates a main audio input including the voice of the primary speaker as well as background noise. Reference audio input is compared to main audio input to identify the background noise portion of the main audio signal. A noise reduction algorithm suppresses the identified background noise in the main audio signal. The one or more reference microphones defining the acoustic perimeter may be included in separate microphone devices placed in proximity to the main desktop phone, microphones within other nearby desktop telephone devices, or a combination of both types of devices.
    Type: Application
    Filed: July 13, 2020
    Publication date: October 29, 2020
    Inventors: Kwan K. Truong, Peter L. Chu, Steven L. Potts, Eric Elias
  • Patent number: 10750282
    Abstract: The amount of far-field noise transmitted by a primary communication device in an open-plan office environment is reduced by defining an acoustic perimeter of reference microphones around the primary device. Reference microphones generate a reference audio input including far-field noise in the proximity of the primary device. The primary device generates a main audio input including the voice of the primary speaker as well as background noise. Reference audio input is compared to main audio input to identify the background noise portion of the main audio signal. A noise reduction algorithm suppresses the identified background noise in the main audio signal. The one or more reference microphones defining the acoustic perimeter may be included in separate microphone devices placed in proximity to the main desktop phone, microphones within other nearby desktop telephone devices, or a combination of both types of devices.
    Type: Grant
    Filed: December 20, 2019
    Date of Patent: August 18, 2020
    Assignee: Polycom, Inc.
    Inventors: Kwan K. Truong, Peter L. Chu, Steven L. Potts, Eric Elias
  • Publication number: 20200204911
    Abstract: The amount of far-field noise transmitted by a primary communication device in an open-plan office environment is reduced by defining an acoustic perimeter of reference microphones around the primary device. Reference microphones generate a reference audio input including far-field noise in the proximity of the primary device. The primary device generates a main audio input including the voice of the primary speaker as well as background noise. Reference audio input is compared to main audio input to identify the background noise portion of the main audio signal. A noise reduction algorithm suppresses the identified background noise in the main audio signal. The one or more reference microphones defining the acoustic perimeter may be included in separate microphone devices placed in proximity to the main desktop phone, microphones within other nearby desktop telephone devices, or a combination of both types of devices.
    Type: Application
    Filed: December 20, 2019
    Publication date: June 25, 2020
    Inventors: Kwan K. Truong, Peter L. Chu, Steven L. Potts, Eric Elias
  • Patent number: 10567875
    Abstract: The amount of far-field noise transmitted by a primary communication device in an open-plan office environment is reduced by defining an acoustic perimeter of reference microphones around the primary device. Reference microphones generate a reference audio input including far-field noise in the proximity of the primary device. The primary device generates a main audio input including the voice of the primary speaker as well as background noise. Reference audio input is compared to main audio input to identify the background noise portion of the main audio signal. A noise reduction algorithm suppresses the identified background noise in the main audio signal. The one or more reference microphones defining the acoustic perimeter may be included in separate microphone devices placed in proximity to the main desktop phone, microphones within other nearby desktop telephone devices, or a combination of both types of devices.
    Type: Grant
    Filed: April 5, 2019
    Date of Patent: February 18, 2020
    Assignee: Polycom, Inc.
    Inventors: Kwan K. Truong, Peter L. Chu, Steven L. Potts, Eric Elias
  • Patent number: 10555080
    Abstract: The amount of far-field noise transmitted by a primary communication device in an open-plan office environment is reduced by defining an acoustic perimeter of reference microphones around the primary device. Reference microphones generate a reference audio input including far-field noise in the proximity of the primary device. The primary device generates a main audio input including the voice of the primary speaker as well as background noise. Reference audio input is compared to main audio input to identify the background noise portion of the main audio signal. A noise reduction algorithm suppresses the identified background noise in the main audio signal. The one or more reference microphones defining the acoustic perimeter may be included in separate microphone devices placed in proximity to the main desktop phone, microphones within other nearby desktop telephone devices, or a combination of both types of devices.
    Type: Grant
    Filed: April 5, 2019
    Date of Patent: February 4, 2020
    Assignee: Polycom, Inc.
    Inventors: Kwan K. Truong, Peter L. Chu, Steven L. Potts, Eric Elias
  • Publication number: 20200029154
    Abstract: The amount of far-field noise transmitted by a primary communication device in an open-plan office environment is reduced by defining an acoustic perimeter of reference microphones around the primary device. Reference microphones generate a reference audio input including far-field noise in the proximity of the primary device. The primary device generates a main audio input including the voice of the primary speaker as well as background noise. Reference audio input is compared to main audio input to identify the background noise portion of the main audio signal. A noise reduction algorithm suppresses the identified background noise in the main audio signal. The one or more reference microphones defining the acoustic perimeter may be included in separate microphone devices placed in proximity to the main desktop phone, microphones within other nearby desktop telephone devices, or a combination of both types of devices.
    Type: Application
    Filed: April 5, 2019
    Publication date: January 23, 2020
    Inventors: Kwan K. Truong, Peter L. Chu, Steven L. Potts, Eric Elias
  • Publication number: 20190238978
    Abstract: The amount of far-field noise transmitted by a primary communication device in an open-plan office environment is reduced by defining an acoustic perimeter of reference microphones around the primary device. Reference microphones generate a reference audio input including far-field noise in the proximity of the primary device. The primary device generates a main audio input including the voice of the primary speaker as well as background noise. Reference audio input is compared to main audio input to identify the background noise portion of the main audio signal. A noise reduction algorithm suppresses the identified background noise in the main audio signal. The one or more reference microphones defining the acoustic perimeter may be included in separate microphone devices placed in proximity to the main desktop phone, microphones within other nearby desktop telephone devices, or a combination of both types of devices.
    Type: Application
    Filed: April 5, 2019
    Publication date: August 1, 2019
    Inventors: Kwan K. Truong, Peter L. Chu, Steven L. Potts
  • Publication number: 20150365762
    Abstract: The amount of far-field noise transmitted by a primary communication device in an open-plan office environment is reduced by defining an acoustic perimeter of reference microphones around the primary device. Reference microphones generate a reference audio input including far-field noise in the proximity of the primary device. The primary device generates a main audio input including the voice of the primary speaker as well as background noise. Reference audio input is compared to main audio input to identify the background noise portion of the main audio signal. A noise reduction algorithm suppresses the identified background noise in the main audio signal. The one or more reference microphones defining the acoustic perimeter may be included in separate microphone devices placed in proximity to the main desktop phone, microphones within other nearby desktop telephone devices, or a combination of both types of devices.
    Type: Application
    Filed: June 14, 2014
    Publication date: December 17, 2015
    Inventors: Kwan K. Truon, Peter L. Chu, Steven L. Potts
  • Patent number: 6593956
    Abstract: A system, such as a video conferencing system, is provided which includes an image pickup device, an audio pickup device, and an audio source locator. The image pickup device generates image signals representative of an image, while the audio pickup device generates audio signals representative of sound from an audio source, such as speaking person. The audio source locator processes the image signals and audio signals to determine a direction of the audio source relative to a reference point. The system can further determine a location of the audio source relative to the reference point. The reference point can be a camera. The system can use the direction or location information to frame a proper camera shot which would include the audio source.
    Type: Grant
    Filed: May 15, 1998
    Date of Patent: July 15, 2003
    Assignee: Polycom, Inc.
    Inventors: Steven L. Potts, Hong Wang, Wendi Beth Rabiner, Peter L. Chu
  • Patent number: 6104336
    Abstract: A method of operating a radar system, including the steps of digitally sampling a received signal at a predetermined sampling rate, to periodically provide a set of selected samples, the set of selected samples including positive going ramp samples, negative going ramp samples and CW burst samples and performing a first fast Fourier transform (FFT) on the positive going ramp samples, performing a second fast Fourier transform on the negative going ramp samples and performing a third fast Fourier transform on the CW burst samples is described.
    Type: Grant
    Filed: September 27, 1999
    Date of Patent: August 15, 2000
    Assignee: Raytheon Company
    Inventors: Anthony Curran, Steven L. Potts, Arthur Crain
  • Patent number: 6011507
    Abstract: A method of operating a radar system, including the steps of digitally sampling a received signal at a predetermined sampling rate, to periodically provide a set of selected samples, the set of selected samples including positive going ramp samples, negative going ramp samples and CW burst samples and performing a first fast Fourier transform (FFT) on the positive going ramp samples, performing a second fast Fourier transform on the negative going ramp samples and performing a third fast Fourier transform on the CW burst samples is described.
    Type: Grant
    Filed: November 12, 1996
    Date of Patent: January 4, 2000
    Assignee: Raytheon Company
    Inventors: Anthony Curran, Steven L. Potts, Arthur Crain
  • Patent number: D389839
    Type: Grant
    Filed: January 8, 1997
    Date of Patent: January 27, 1998
    Assignee: PictureTel Corporation
    Inventors: Edward C. Woodman, Steven L. Potts, Adam Reed, Russell Siggelkoe, Hong Wang