Patents by Inventor Michel LAYOUR

Michel LAYOUR 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: 11300601
    Abstract: Systems and methods for detecting an arc fault in a circuit breaker use a single-coil current rate of change (di/dt) sensor for monitoring both low frequency alternating current (AC) and broadband high frequency noise on a power line. The di/dt sensor is optimized to amplify any broadband high frequency noise, typically from about 1 MHz to 40 MHz, that may be present on the power line. Low frequency signals representing the current being monitored, typically from about 1 Hz to 10 KHz, is provided to an active integrator circuit with a high gain to enable the single-coil sensitivity. To shorten capacitor charge up time of the active integrator circuit, a charging current is provided to the active integrator circuit upon startup of the circuit breaker.
    Type: Grant
    Filed: June 15, 2018
    Date of Patent: April 12, 2022
    Assignee: Schneider Electric USA, Inc.
    Inventors: Hynek Raisigel, Gary W. Scott, Michel Layour, Andi Jakupi
  • Patent number: 11165237
    Abstract: An arc fault detection system samples a high frequency signal on a power line sequentially at different frequency regions according to a frequency hopping sequence, which is repeated a number of times over a predefined period. The different frequency regions include at least one region with a carrier for power line communication on the power line and at least one region without a carrier for power line communication on the power line. The system obtains energy measurements for each frequency region based on the sampled signals, computes an energy level for each frequency region based on the measurements for each region, and assigns a binary value to each region according to the corresponding energy level. The binary value represents a presence or absence of signal content in the frequency region. The system determines a presence or absence of an arc fault based on the binary values for the frequency regions.
    Type: Grant
    Filed: February 12, 2020
    Date of Patent: November 2, 2021
    Assignee: Schneider Electric USA, Inc.
    Inventors: Andi Jakupi, Michel Layour, Hynek Raisigel, Costin Vasile, Paul A. Reid, Gary Scott, Joseph Beierschmitt
  • Publication number: 20200235561
    Abstract: An arc fault detection system samples a high frequency signal on a power line sequentially at different frequency regions according to a frequency hopping sequence, which is repeated a number of times over a predefined period. The different frequency regions include at least one region with a carrier for power line communication on the power line and at least one region without a carrier for power line communication on the power line. The system obtains energy measurements for each frequency region based on the sampled signals, computes an energy level for each frequency region based on the measurements for each region, and assigns a binary value to each region according to the corresponding energy level. The binary value represents a presence or absence of signal content in the frequency region. The system determines a presence or absence of an arc fault based on the binary values for the frequency regions.
    Type: Application
    Filed: February 12, 2020
    Publication date: July 23, 2020
    Applicant: SCHNEIDER ELECTRIC USA, INC.
    Inventors: Andi JAKUPI, Michel LAYOUR, Hynek RAISIGEL, Costin VASILE, Paul A. REID, Gary SCOTT, Joseph BEIERSCHMITT
  • Patent number: 10601213
    Abstract: An arc fault detection system samples a high frequency signal on a power line sequentially at different frequency regions according to a frequency hopping sequence, which is repeated a number of times over a predefined period. The different frequency regions include at least one region with a carrier for power line communication on the power line and at least one region without a carrier for power line communication on the power line. The system obtains energy measurements for each frequency region based on the sampled signals, computes an energy level for each frequency region based on the measurements for each region, and assigns a binary value to each region according to the corresponding energy level. The binary value represents a presence or absence of signal content in the frequency region. The system determines a presence or absence of an arc fault based on the binary values for the frequency regions.
    Type: Grant
    Filed: May 22, 2018
    Date of Patent: March 24, 2020
    Assignee: Schneider Electric USA, Inc.
    Inventors: Andi Jakupi, Michel Layour, Hynek Raisigel, Costin Vasile, Paul A. Reid, Gary Scott, Joseph Beierschmitt
  • Publication number: 20190386478
    Abstract: Systems and methods for detecting an arc fault in a circuit breaker use a single-coil current rate of change (di/dt) sensor for monitoring both low frequency alternating current (AC) and broadband high frequency noise on a power line. The di/dt sensor is optimized to amplify any broadband high frequency noise, typically from about 1 MHz to 40 MHz, that may be present on the power line. Low frequency signals representing the current being monitored, typically from about 1 Hz to 10 KHz, is provided to an active integrator circuit with a high gain to enable the single-coil sensitivity. To shorten capacitor charge up time of the active integrator circuit, a charging current is provided to the active integrator circuit upon startup of the circuit breaker.
    Type: Application
    Filed: June 15, 2018
    Publication date: December 19, 2019
    Applicant: Schneider Electric USA, Inc.
    Inventors: Hynek RAISIGEL, Gary W. Scott, Michel LAYOUR, Andi JAKUPI
  • Publication number: 20190363530
    Abstract: An arc fault detection system samples a high frequency signal on a power line sequentially at different frequency regions according to a frequency hopping sequence, which is repeated a number of times over a predefined period. The different frequency regions include at least one region with a carrier for power line communication on the power line and at least one region without a carrier for power line communication on the power line. The system obtains energy measurements for each frequency region based on the sampled signals, computes an energy level for each frequency region based on the measurements for each region, and assigns a binary value to each region according to the corresponding energy level. The binary value represents a presence or absence of signal content in the frequency region. The system determines a presence or absence of an arc fault based on the binary values for the frequency regions.
    Type: Application
    Filed: May 22, 2018
    Publication date: November 28, 2019
    Applicant: SCHNEIDER ELECTRIC USA, INC.
    Inventors: Andi JAKUPI, Michel LAYOUR, Hynek RAISIGEL, Costin VASILE, Paul A. REID, Gary SCOTT, Joseph BEIERSCHMITT