Patents by Inventor Alexander Filippenko

Alexander Filippenko 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: 10511238
    Abstract: A method of performing temperature-based diagnostics for motor starters within a physical grouping of motor starters is performed by determining a presently expected temperature operating range for each starter based on measuring operating temperatures of the starters; measuring their current draws, and evaluating the temperature and load draw data in light of compensation values assigned for the known power ratings of the starter and the starter's physical location within the grouping. With the presently expected temperature operating range of the starter determined, and the periodic monitoring of starter temperatures, when an individual starter's temperature exceeds its expected range, a diagnostic warning will be issued for that starter and/or for the control panel itself as a guide for preventative maintenance. Alternately, the warning may be issued for an unexpected temperature rise for a given rise in current draw, or for values exceeding an expected rate of temperature change.
    Type: Grant
    Filed: November 15, 2017
    Date of Patent: December 17, 2019
    Assignee: Schneider Electric USA, Inc.
    Inventors: Kevin M Jefferies, Benjamin W Edwards, Matthew L White, Alan E Freeman, Richard Karl Weiler, Konstantin Alexander Filippenko, Julius Michael Liptak
  • Publication number: 20190149067
    Abstract: A method of performing temperature-based diagnostics for motor starters within a physical grouping of motor starters is performed by determining a presently expected temperature operating range for each starter based on measuring operating temperatures of the starters; measuring their current draws, and evaluating the temperature and load draw data in light of compensation values assigned for the known power ratings of the starter and the starter's physical location within the grouping. With the presently expected temperature operating range of the starter determined, and the periodic monitoring of starter temperatures, when an individual starter's temperature exceeds its expected range, a diagnostic warning will be issued for that starter and/or for the control panel itself as a guide for preventative maintenance. Alternately, the warning may be issued for an unexpected temperature rise for a given rise in current draw, or for values exceeding an expected rate of temperature change.
    Type: Application
    Filed: November 15, 2017
    Publication date: May 16, 2019
    Applicant: Schneider Electric USA, Inc.
    Inventors: Kevin M. Jefferies, Benjamin W. Edwards, Matthew L. White, Alan E. Freeman, Richard Karl Weiler, Konstantin Alexander Filippenko, Julius Michael Liptak
  • Patent number: 10272792
    Abstract: An EVSE is equipped with voltage and current monitors to monitor V and I values over the time of charging. Normal V & I charging values for EV charging have been previously established and plotted as a threshold curve. During present charging, the V and Z values are plotted and compared to the threshold values and the slope of the V/I curve. If present value of V is less than the threshold value, or drops over time, or the Z value increases over time; current (I) to the EV is reduced and a new V/I curve is plotted. Slope of the new V/I curve is compared to the threshold and also checked for change of slope over time. If the new V/I curve slope is greater than the threshold slope, or is changing over time, corrective action is taken.
    Type: Grant
    Filed: October 28, 2016
    Date of Patent: April 30, 2019
    Assignee: Schneider Electric USA, Inc.
    Inventors: Kevin M Jefferies, Benjamin W Edwards, Matthew L White, Konstantin Alexander Filippenko, Richard Karl Weiler
  • Patent number: 10230198
    Abstract: An adapter which can be retrofit onto the downstream end of a standard Electric Vehicle Supply Equipment connector is used to control power consumption of an Electric Vehicle charging facility by intercepting the Control Pilot Signal going to the Electric Vehicle and issuing a new Control Pilot Signal to the Electric Vehicle which is particularly tailored for the present use, requirements and limitations of the delivery system capability. The adapter has wireless communication capability, requires no wiring to and from the Electric Vehicle Supply Equipment, is independent of any proprietary designs of the Electric Vehicle Supply Equipment and adds no constraints or requirements to the Electric Vehicle Supply Equipment.
    Type: Grant
    Filed: September 29, 2016
    Date of Patent: March 12, 2019
    Assignee: Schneider Electric USA, Inc.
    Inventors: Kevin M Jefferies, Benjamin W Edwards, Matthew L White, Konstantin Alexander Filippenko, Richard Karl Weiler
  • Patent number: 10154046
    Abstract: A system and method for evaluating and altering, if necessary, the potential for a cyber security attack on an individual embedded device located on a local network assumed to be protected from outside cyber threats. In a first level of potential exposure the system attempts to send an outgoing message to a known IP address on a network outside the local network. If the outgoing messages are confirmed as received the embedded device has access to outside networks. In a second level of potential exposure the known outside IP address attempts to send an incoming message to the embedded device. If the incoming message is received the embedded can be accessed from an external network.
    Type: Grant
    Filed: December 28, 2015
    Date of Patent: December 11, 2018
    Assignee: Schneider Electric USA, Inc.
    Inventors: Benjamin W. Edwards, Konstantin Alexander Filippenko, Richard Karl Weiler, Matthew L. White, Kevin M. Jefferies
  • Patent number: 10132697
    Abstract: The present invention provides a method of using a current transformer for a temperature sensing device. The method determines the temperature of the current transformer's secondary winding by injecting a DC current into the secondary winding, measuring a voltage across the secondary winding, calculating the resistance of the secondary winding from the voltage induced into the secondary winding by the injected DC current and determining the secondary winding temperature by calculations or a comparison with verified resistance/temperature combinations.
    Type: Grant
    Filed: December 23, 2015
    Date of Patent: November 20, 2018
    Assignee: Schneider Electric USA, Inc.
    Inventors: Kevin M. Jefferies, Benjamin W. Edwards, Matthew L. White, Konstantin Alexander Filippenko, Richard Karl Weiler
  • Publication number: 20180170195
    Abstract: A multiple output port adapter retrofit is used to extend the number of output ports for a single port Electric Vehicle Supply Equipment (EVSE) in a cost efficient manner without affecting the single EVSE supply power infrastructure. Each branch of the adapter has a self-contained controller and communicates with other branches via a central communication bus. The branch central controllers evenly divide the available power capacity and allow simultaneous charging of multiple EVs with the divided power and without adding requirements to the Electric Vehicle Supply Equipment.
    Type: Application
    Filed: December 19, 2016
    Publication date: June 21, 2018
    Applicant: Schneider Electric USA, Inc.
    Inventors: Kevin M. Jefferies, Benjamin W. Edwards, Matthew L. White, Konstantin Alexander Filippenko, Richard Karl Weiler
  • Publication number: 20180118046
    Abstract: An EVSE is equipped with voltage and current monitors to monitor V and I values over the time of charging. Normal V & I charging values for EV charging have been previously established and plotted as a threshold curve. During present charging, the V and Z values are plotted and compared to the threshold values and the slope of the V/I curve. If present value of V is less than the threshold value, or drops over time, or the Z value increases over time; current (I) to the EV is reduced and a new V/I curve is plotted. Slope of the new V/I curve is compared to the threshold and also checked for change of slope over time. If the new V/I curve slope is greater than the threshold slope, or is changing over time, corrective action is taken.
    Type: Application
    Filed: October 28, 2016
    Publication date: May 3, 2018
    Applicant: Schneider Electric USA, Inc.
    Inventors: Kevin M. Jefferies, Benjamin W. Edwards, Matthew L. White, Konstantin Alexander Filippenko, Richard Karl Weiler
  • Publication number: 20180086213
    Abstract: An adapter which can be retrofit onto the downstream end of a standard Electric Vehicle Supply Equipment connector is used to control power consumption of an Electric Vehicle charging facility by intercepting the Control Pilot Signal going to the Electric Vehicle and issuing a new Control Pilot Signal to the Electric Vehicle which is particularly tailored for the present use, requirements and limitations of the delivery system capability. The adapter has wireless communication capability, requires no wiring to and from the Electric Vehicle Supply Equipment, is independent of any proprietary designs of the Electric Vehicle Supply Equipment and adds no constraints or requirements to the Electric Vehicle Supply Equipment.
    Type: Application
    Filed: September 29, 2016
    Publication date: March 29, 2018
    Applicant: Schneider Electric USA, Inc.
    Inventors: Kevin M Jefferies, Benjamin W Edwards, Matthew L White, Konstantin Alexander Filippenko, Richard Karl Weiler
  • Patent number: 9893557
    Abstract: An example embodiment of the invention is a method and device for detecting foreign objects (FO) near the primary coil of an induction charger used in charging electric vehicle batteries. Individual sensors of a sensor array are configured to output a sensing signal in response to magnetically coupling the high frequency alternating magnetic field produced by the primary coil. A disable signal line is configured to disable the power source when a controller determines from scanned sensor signals, that a FO is present. An alarm can be activated by the microprocessor to alert the user to the presence of a FO on or near the primary coil. In this manner, damage can be avoided that could otherwise be caused from the presence of a FO near the primary coil. Moreover, a more efficient charging operation can be achieved by avoiding dissipating energy by heating a FO.
    Type: Grant
    Filed: July 12, 2013
    Date of Patent: February 13, 2018
    Assignee: Schneider Electric USA, Inc.
    Inventors: Alexander Filippenko, Mark Kocher
  • Patent number: 9851382
    Abstract: According to one aspect, embodiments of the invention provide a power meter comprising a voltage sensor, at least one current and phase sensor circuit, and a central metering unit, wherein the voltage sensor is further configured to measure a voltage on an input line and transmit a signal related to the voltage to the central metering unit, wherein the at least one current and phase sensor circuit is further configured to measure a current and a voltage phase shift of a feeder line, and to transmit a signal related to at least one of the current of the feeder line and the voltage phase shift of the feeder line to the central metering unit, and wherein the central metering unit is configured to calculate power provided to a load via the feeder line based on the signal transmitted from the at least one current and phase sensor circuit.
    Type: Grant
    Filed: December 27, 2012
    Date of Patent: December 26, 2017
    Assignee: SCHNEIDER ELECTRIC USA, INC.
    Inventors: Marc Bruel, Paul Buda, Colin Gunn, Roy Colby, Alexander Filippenko
  • Patent number: 9829599
    Abstract: The invention detects foreign objects FO near a primary coil 100 of an induction charger. A sensors 111 of a sensor array 110 output sensing signals in response to magnetically coupling the alternating magnetic field 103 produced by the primary coil. A controller 165 connected to each sensor 111 scans the sensing signals and determines whether there is a foreign object perturbing the magnetic field 103 near a sensor. The magnetic field has a spatial distribution that varies by location across the primary coil area. Each sensor has a magnetic field sensing sensitivity that is inversely proportional to the magnetic intensity of the magnetic field produced by the primary coil at a location of the sensor, to reduce the collective dynamic range of the signals, thereby contributing to maintaining a high accuracy in signal sampling. A reference sensor coil 155 compensates for magnetic field drift of the primary coil.
    Type: Grant
    Filed: March 23, 2015
    Date of Patent: November 28, 2017
    Assignee: Schneider Electric USA, Inc.
    Inventors: Alexander Filippenko, Mark Kocher
  • Publication number: 20170187728
    Abstract: A system and method for evaluating and altering, if necessary, the potential for a cyber security attack on an individual embedded device located on a local network assumed to be protected from outside cyber threats. In a first level of potential exposure the system attempts to send an outgoing message to a known IP address on a network outside the local network. If the outgoing messages are confirmed as received the embedded device has access to outside networks. In a second level of potential exposure the known outside IP address attempts to send an incoming message to the embedded device. If the incoming message is received the embedded can be accessed from an external network.
    Type: Application
    Filed: December 28, 2015
    Publication date: June 29, 2017
    Applicant: SCHNEIDER ELECTRIC USA, INC.
    Inventors: Benjamin W. Edwards, Konstantin Alexander Filippenko, Richard Karl Weiler, Matthew L. White, Kevin M. Jefferies
  • Publication number: 20170184458
    Abstract: The present invention provides a method of using a current transformer for a temperature sensing device. The method determines the temperature of the current transformer's secondary winding by injecting a DC current into the secondary winding, measuring a voltage across the secondary winding, calculating the resistance of the secondary winding from the voltage induced into the secondary winding by the injected DC current and determining the secondary winding temperature by calculations or a comparison with verified resistance/temperature combinations.
    Type: Application
    Filed: December 23, 2015
    Publication date: June 29, 2017
    Applicant: SCHNEIDER ELECTRIC USA, INC.
    Inventors: Kevin M. Jefferies, Benjamin W. Edwards, Matthew L. White, Konstantin Alexander Filippenko, Richard Karl Weiler
  • Publication number: 20170179854
    Abstract: A load starting system in which an upstream controller determines the sequence and timing for starting a group of loads in the most efficient and timely manner. The sequence and timing is determined by one or more real-time operational characteristics, device rating characteristics, customer/user characteristics or learned/historic characteristics or by a combination of the one or more real-time, device rating, customer/user or learned/historic characteristic.
    Type: Application
    Filed: December 21, 2015
    Publication date: June 22, 2017
    Applicant: SCHNEIDER ELETRIC USA, INC.
    Inventors: Alan E. Freeman, Kevin M. Jefferies, Benjamin W. Edwards, Matthew L. White, Konstantin Alexander Filippenko, Richard Karl Weiler
  • Patent number: 9654106
    Abstract: A dynamic digital filtering system for detecting electrical noise in a discrete I/O circuit. The dynamic digital filtering system has a controller for monitoring the logic signal produced by a logic device monitoring a remote I/O device. The logic device includes a circuit for dynamically adjusting the impedance across a power terminal and a terminal receiving a binary signal from the I/O device. Upon a change of state of the monitored logic signal the controller commands the impedance adjusting circuit to momentarily change its input impedance to determine if the binary signal responsible for the monitored change of state of the logic signal was true or false. If the monitored logic signal does not change state during the momentary change in impedance the binary signal will be verified as “true”. If the monitored logic signal does change state during the momentary change in impedance the binary signal will be considered as “false”.
    Type: Grant
    Filed: December 21, 2015
    Date of Patent: May 16, 2017
    Assignee: SCHNEIDER ELECTRIC USA, INC.
    Inventors: Kevin M. Jefferies, Benjamin W. Edwards, Matthew L. White, Konstantin Alexander Filippenko, Richard Karl Weiler
  • Publication number: 20160282500
    Abstract: The invention detects foreign objects FO near a primary coil 100 of an induction charger. A sensors 111 of a sensor array 110 output sensing signals in response to magnetically coupling the alternating magnetic field 103 produced by the primary coil. A controller 165 connected to each sensor 111 scans the sensing signals and determines whether there is a foreign object perturbing the magnetic field 103 near a sensor. The magnetic field has a spatial distribution that varies by location across the primary coil area. Each sensor has a magnetic field sensing sensitivity that is inversely proportional to the magnetic intensity of the magnetic field produced by the primary coil at a location of the sensor, to reduce the collective dynamic range of the signals, thereby contributing to maintaining a high accuracy in signal sampling. A reference sensor coil 155 compensates for magnetic field drift of the primary coil.
    Type: Application
    Filed: March 23, 2015
    Publication date: September 29, 2016
    Inventors: Alexander FILIPPENKO, Mark KOCHER
  • Publication number: 20160172891
    Abstract: An example embodiment of the invention is a method and device for detecting foreign objects (FO) near the primary coil of an induction charger used in charging electric vehicle batteries. Individual sensors of a sensor array are configured to output a sensing signal in response to magnetically coupling the high frequency alternating magnetic field produced by the primary coil. A disable signal line is configured to disable the power source when a controller determines from scanned sensor signals, that a FO is present. An alarm can be activated by the microprocessor to alert the user to the presence of a FO on or near the primary coil. In this manner, damage can be avoided that could otherwise be caused from the presence of a FO near the primary coil. Moreover, a more efficient charging operation can be achieved by avoiding dissipating energy by heating a FO.
    Type: Application
    Filed: July 12, 2013
    Publication date: June 16, 2016
    Applicant: SCHNEIDER ELECTRIC USA, INC.
    Inventors: Alexander FILIPPENKO, Mark KOCHER
  • Patent number: 9368008
    Abstract: Systems, methods, devices, and computer-readable media detect a status of a cable 204, and in particular, a cable of electric supply equipment. An example of electric supply equipment is electric vehicle supply equipment 200, which may be used for charging an electric vehicle 201. The electric vehicle supply equipment 200 may include a cable 204 for delivering electric power from a power source to the electric vehicle 201. Further, the electric vehicle supply equipment 200 may include a cable detection subcircuit 225 for detecting a status of its cable 204. Specifically, the cable detection subcircuit 225 may detect whether the cable 204 has been removed. Further, the electric vehicle supply equipment 200 may take various actions based on results provided by the cable detection subcircuit 225.
    Type: Grant
    Filed: May 30, 2012
    Date of Patent: June 14, 2016
    Assignee: Schneider Electric USA, Inc.
    Inventors: Kevin M. Jefferies, Benjamin W. Edwards, Matthew L. White, Konstantin Alexander Filippenko
  • Patent number: 9283852
    Abstract: Systems, methods, apparatuses, and computer-readable media provide electric supply equipment 200 configured to perform diagnostics. The electric supply equipment 200 may include a receptacle 210 for forming a closed circuit loop. The electric supply equipment 200 includes a connector 203 for charging devices, such as electric vehicles 101. The connector 203 may include one or more conductors, some of which may be wrapped with insulation. When the connector 103, 203 is not used for charging, the connector 203 may be connected to a receptacle 210 of the electric supply equipment 200. Thus, the electric supply equipment 200, via the receptacle 210, may form a closed loop circuit with the conductors. Further, the electric supply equipment 200 may include a diagnostic unit 250 for performing diagnostic tests on the conductors. In particular, the diagnostic unit 250 may access ends of the conductors via the receptacle 210.
    Type: Grant
    Filed: May 9, 2012
    Date of Patent: March 15, 2016
    Assignee: Schneider Electric USA, Inc.
    Inventors: Kevin M. Jefferies, Benjamin W. Edwards, Matthew L. White, Konstantin Alexander Filippenko, Richard Karl Weiler