Patents by Inventor Piyali Goswami

Piyali Goswami 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: 12153161
    Abstract: A method of operating a frequency modulated continuous wave (FMCW) radar system includes receiving, by at least one processor, digital intermediate frequency (IF) signals from a mixer coupled to a receive antenna. The method also includes computing, by the at least one processor, a motion metric based on the digital IF signals; operating, by the at least one processor, the FMCW radar system in a classification mode, in response to determining that the motion metric is above a threshold; and operating, by the at least one processor, the FMCW radar system in a detection mode, in response to determining that the motion metric is below the threshold for at least a first amount of time. An amount of power consumed by the FMCW radar system in the detection mode is less than an amount of power consumed by the FMCW radar system in the classification mode.
    Type: Grant
    Filed: May 4, 2021
    Date of Patent: November 26, 2024
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Piyali Goswami, Sandeep Rao, Sachin Bharadwaj
  • Publication number: 20240340430
    Abstract: Several methods and systems for masking multimedia data are disclosed. In an embodiment, a method for masking includes performing a prediction for at least one multimedia data block based on a prediction mode of a plurality of prediction modes. The at least one multimedia data block is associated with a region of interest (ROI). A residual multimedia data associated with the at least one multimedia data block is generated based on the prediction. A quantization of the residual multimedia data is performed based on a quantization parameter (QP) value. The QP value is variable such that varying the QP value controls a degree of masking of the ROI.
    Type: Application
    Filed: June 21, 2024
    Publication date: October 10, 2024
    Inventors: Yashwant Dutt, Kumar Desappan, Piyali Goswami
  • Patent number: 12022093
    Abstract: Several methods and systems for masking multimedia data are disclosed. In an embodiment, a method for masking includes performing a prediction for at least one multimedia data block based on a prediction mode of a plurality of prediction modes. The at least one multimedia data block is associated with a region of interest (ROI). A residual multimedia data associated with the at least one multimedia data block is generated based on the prediction. A quantization of the residual multimedia data is performed based on a quantization parameter (QP) value. The QP value is variable such that varying the QP value controls a degree of masking of the ROI.
    Type: Grant
    Filed: May 30, 2022
    Date of Patent: June 25, 2024
    Assignee: Texas Instruments Incorporated
    Inventors: Yashwant Dutt, Kumar Desappan, Piyali Goswami
  • Publication number: 20220295079
    Abstract: Several methods and systems for masking multimedia data are disclosed. In an embodiment, a method for masking includes performing a prediction for at least one multimedia data block based on a prediction mode of a plurality of prediction modes. The at least one multimedia data block is associated with a region of interest (ROI). A residual multimedia data associated with the at least one multimedia data block is generated based on the prediction. A quantization of the residual multimedia data is performed based on a quantization parameter (QP) value. The QP value is variable such that varying the QP value controls a degree of masking of the ROI.
    Type: Application
    Filed: May 30, 2022
    Publication date: September 15, 2022
    Inventors: Yashwant Dutt, Kumar Desappan, Piyali Goswami
  • Patent number: 11368699
    Abstract: Several methods and systems for masking multimedia data are disclosed. In an embodiment, a method for masking includes performing a prediction for at least one multimedia data block based on a prediction mode of a plurality of prediction modes. The at least one multimedia data block is associated with a region of interest (ROI). A residual multimedia data associated with the at least one multimedia data block is generated based on the prediction. A quantization of the residual multimedia data is performed based on a quantization parameter (QP) value. The QP value is variable such that varying the QP value controls a degree of masking of the ROI.
    Type: Grant
    Filed: November 30, 2020
    Date of Patent: June 21, 2022
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Yashwant Dutt, Kumar Desappan, Piyali Goswami
  • Patent number: 11204647
    Abstract: A method for gesture recognition includes receiving, by a processor, a first digital intermediate frequency (IF) signal stream from a first receive antenna and receiving, by the processor, a second digital IF signal stream from a second receive antenna. The method also includes computing, by the processor, a weighted Doppler metric stream based on the first digital IF signal stream and the second digital IF signal stream and computing, by the processor, an angle metric stream based on the first digital IF signal stream and the second digital IF signal stream. Additionally, the method includes computing, by the processor, a correlation between the weighted Doppler metric stream and the angle metric stream, to generate a first correlation and recognizing, by the processor, a gesture, based on the first correlation.
    Type: Grant
    Filed: April 13, 2018
    Date of Patent: December 21, 2021
    Assignee: Texas Instruments Incorporated
    Inventors: Sandeep Rao, Sachin Bharadwaj, Piyali Goswami
  • Publication number: 20210255279
    Abstract: A method of operating a frequency modulated continuous wave (FMCW) radar system includes receiving, by at least one processor, digital intermediate frequency (IF) signals from a mixer coupled to a receive antenna. The method also includes computing, by the at least one processor, a motion metric based on the digital IF signals; operating, by the at least one processor, the FMCW radar system in a classification mode, in response to determining that the motion metric is above a threshold; and operating, by the at least one processor, the FMCW radar system in a detection mode, in response to determining that the motion metric is below the threshold for at least a first amount of time. An amount of power consumed by the FMCW radar system in the detection mode is less than an amount of power consumed by the FMCW radar system in the classification mode.
    Type: Application
    Filed: May 4, 2021
    Publication date: August 19, 2021
    Inventors: Piyali GOSWAMI, Sandeep RAO, Sachin BHARADWAJ
  • Patent number: 10996313
    Abstract: A method of operating a frequency modulated continuous wave (FMCW) radar system includes receiving, by at least one processor, digital intermediate frequency (IF) signals from a mixer coupled to a receive antenna. The method also includes computing, by the at least one processor, a motion metric based on the digital IF signals; operating, by the at least one processor, the FMCW radar system in a classification mode, in response to determining that the motion metric is above a threshold; and operating, by the at least one processor, the FMCW radar system in a detection mode, in response to determining that the motion metric is below the threshold for at least a first amount of time. An amount of power consumed by the FMCW radar system in the detection mode is less than an amount of power consumed by the FMCW radar system in the classification mode.
    Type: Grant
    Filed: October 29, 2018
    Date of Patent: May 4, 2021
    Assignee: Texas Instruments Incorporated
    Inventors: Piyali Goswami, Sandeep Rao, Sachin Bharadwaj
  • Publication number: 20210112257
    Abstract: Several methods and systems for masking multimedia data are disclosed. In an embodiment, a method for masking includes performing a prediction for at least one multimedia data block based on a prediction mode of a plurality of prediction modes. The at least one multimedia data block is associated with a region of interest (ROI). A residual multimedia data associated with the at least one multimedia data block is generated based on the prediction. A quantization of the residual multimedia data is performed based on a quantization parameter (QP) value. The QP value is variable such that varying the QP value controls a degree of masking of the ROI.
    Type: Application
    Filed: November 30, 2020
    Publication date: April 15, 2021
    Inventors: Yashwant Dutt, Kumar Desappan, Piyali Goswami
  • Patent number: 10880556
    Abstract: Several methods and systems for masking multimedia data are disclosed. In an embodiment, a method for masking includes performing a prediction for at least one multimedia data block based on a prediction mode of a plurality of prediction modes. The at least one multimedia data block is associated with a region of interest (ROI). A residual multimedia data associated with the at least one multimedia data block is generated based on the prediction. A quantization of the residual multimedia data is performed based on a quantization parameter (QP) value. The QP value is variable such that varying the QP value controls a degree of masking of the ROI.
    Type: Grant
    Filed: December 7, 2018
    Date of Patent: December 29, 2020
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Yashwant Dutt, Kumar Desappan, Piyali Goswami
  • Publication number: 20200132811
    Abstract: A method of operating a frequency modulated continuous wave (FMCW) radar system includes receiving, by at least one processor, digital intermediate frequency (IF) signals from a mixer coupled to a receive antenna. The method also includes computing, by the at least one processor, a motion metric based on the digital IF signals; operating, by the at least one processor, the FMCW radar system in a classification mode, in response to determining that the motion metric is above a threshold; and operating, by the at least one processor, the FMCW radar system in a detection mode, in response to determining that the motion metric is below the threshold for at least a first amount of time. An amount of power consumed by the FMCW radar system in the detection mode is less than an amount of power consumed by the FMCW radar system in the classification mode.
    Type: Application
    Filed: October 29, 2018
    Publication date: April 30, 2020
    Inventors: Piyali GOSWAMI, Sandeep RAO, Sachin BHARADWAJ
  • Patent number: 10397591
    Abstract: A control processor for a video encode-decode engine is provided that includes an instruction pipeline. The instruction pipeline includes an instruction fetch stage coupled to an instruction memory to fetch instructions, an instruction decoding stage coupled to the instruction fetch stage to receive the fetched instructions, and an execution stage coupled to the instruction decoding stage to receive and execute decoded instructions. The instruction decoding stage and the instruction execution stage are configured to decode and execute a set of instructions in an instruction set of the control processor that are designed specifically for accelerating video sequence encoding and encoded video bit stream decoding.
    Type: Grant
    Filed: April 11, 2015
    Date of Patent: August 27, 2019
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Dipan Kumar Mandal, Mihir Narendra Mody, Mahesh Madhukar Mehendale, Chaitanya Satish Ghone, Piyali Goswami, Naresh Kumar Yadav, Hetul Sanghvi, Niraj Nandan
  • Publication number: 20190116364
    Abstract: Several methods and systems for masking multimedia data are disclosed. In an embodiment, a method for masking includes performing a prediction for at least one multimedia data block based on a prediction mode of a plurality of prediction modes. The at least one multimedia data block is associated with a region of interest (ROI). A residual multimedia data associated with the at least one multimedia data block is generated based on the prediction. A quantization of the residual multimedia data is performed based on a quantization parameter (QP) value. The QP value is variable such that varying the QP value controls a degree of masking of the ROI.
    Type: Application
    Filed: December 7, 2018
    Publication date: April 18, 2019
    Inventors: Yashwant Dutt, Kumar Desappan, Piyali Goswami
  • Publication number: 20190087009
    Abstract: A method for gesture recognition includes receiving, by a processor, a first digital intermediate frequency (IF) signal stream from a first receive antenna and receiving, by the processor, a second digital IF signal stream from a second receive antenna. The method also includes computing, by the processor, a weighted Doppler metric stream based on the first digital IF signal stream and the second digital IF signal stream and computing, by the processor, an angle metric stream based on the first digital IF signal stream and the second digital IF signal stream. Additionally, the method includes computing, by the processor, a correlation between the weighted Doppler metric stream and the angle metric stream, to generate a first correlation and recognizing, by the processor, a gesture, based on the first correlation.
    Type: Application
    Filed: April 13, 2018
    Publication date: March 21, 2019
    Inventors: Sandeep Rao, Sachin Bharadwaj, Piyali Goswami
  • Patent number: 10200695
    Abstract: Several methods and systems for masking multimedia data are disclosed. In an embodiment, a method for masking includes performing a prediction for at least one multimedia data block based on a prediction mode of a plurality of prediction modes. The at least one multimedia data block is associated with a region of interest (ROI). A residual multimedia data associated with the at least one multimedia data block is generated based on the prediction. A quantization of the residual multimedia data is performed based on a quantization parameter (QP) value. The QP value is variable such that varying the QP value controls a degree of masking of the ROI.
    Type: Grant
    Filed: March 7, 2016
    Date of Patent: February 5, 2019
    Assignee: Texas Instruments Incorporated
    Inventors: Yashwant Dutt, Kumar Desappan, Piyali Goswami
  • Publication number: 20160191923
    Abstract: Several methods and systems for masking multimedia data are disclosed. In an embodiment, a method for masking includes performing a prediction for at least one multimedia data block based on a prediction mode of a plurality of prediction modes. The at least one multimedia data block is associated with a region of interest (ROI). A residual multimedia data associated with the at least one multimedia data block is generated based on the prediction. A quantization of the residual multimedia data is performed based on a quantization parameter (QP) value. The QP value is variable such that varying the QP value controls a degree of masking of the ROI.
    Type: Application
    Filed: March 7, 2016
    Publication date: June 30, 2016
    Inventors: Yashwant Dutt, Kumar Desappan, Piyali Goswami
  • Patent number: 9282333
    Abstract: Several methods and systems for masking multimedia data are disclosed. In an embodiment, a method for masking includes performing a prediction for at least one multimedia data block based on a prediction mode of a plurality of prediction modes. The at least one multimedia data block is associated with a region of interest (ROI). A residual multimedia data associated with the at least one multimedia data block is generated based on the prediction. A quantization of the residual multimedia data is performed based on a quantization parameter (QP) value. The QP value is variable such that varying the QP value controls a degree of masking of the ROI.
    Type: Grant
    Filed: March 12, 2012
    Date of Patent: March 8, 2016
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Yashwant Dutt, Kumar Dessapan, Piyali Goswami
  • Publication number: 20150296212
    Abstract: A control processor for a video encode-decode engine is provided that includes an instruction pipeline. The instruction pipeline includes an instruction fetch stage coupled to an instruction memory to fetch instructions, an instruction decoding stage coupled to the instruction fetch stage to receive the fetched instructions, and an execution stage coupled to the instruction decoding stage to receive and execute decoded instructions. The instruction decoding stage and the instruction execution stage are configured to decode and execute a set of instructions in an instruction set of the control processor that are designed specifically for accelerating video sequence encoding and encoded video bit stream decoding.
    Type: Application
    Filed: April 11, 2015
    Publication date: October 15, 2015
    Inventors: Dipan Kumar Mandal, Mihir Narendra Mody, Mahesh Madhukar Mehendale, Chaitanya Satish Ghone, Piyali Goswami, Naresh Kumar Yadav, Hetul Sanghvi, Niraj Nandan
  • Publication number: 20120236935
    Abstract: Several methods and systems for masking multimedia data are disclosed. In an embodiment, a method for masking includes performing a prediction for at least one multimedia data block based on a prediction mode of a plurality of prediction modes. The at least one multimedia data block is associated with a region of interest (ROI). A residual multimedia data associated with the at least one multimedia data block is generated based on the prediction. A quantization of the residual multimedia data is performed based on a quantization parameter (QP) value. The QP value is variable such that varying the QP value controls a degree of masking of the ROI.
    Type: Application
    Filed: March 12, 2012
    Publication date: September 20, 2012
    Applicant: Texas Instruments Incorporated
    Inventors: Yashwant Dutt, Kumar Dessapan, Piyali Goswami