701 / 2017-08-19 03:37:15
Low Voltage Power Distribution Level DC Circuit Breaking
disconnect switch, switching, DC, interruption, arcing, permanent magnets, DER, battery, energy storage, PV
Draft Accepted
John Shea / Schneider-Electric
Abstract – Three methods (series arcs, solid-state hybrid, and magnetic field enhanced arcing) for switching/interrupting DC distribution level circuits are described including advantages and limitations of each switching method. An experimental analysis of the effects of applying an external magnetic field, produced from permanent magnets, on the switching performance of a DC disconnect switch is the main focus. The test switch consisted of a double-break contact assembly with a mechanical over-center mechanism, metal arc chute plates, and nylon 6/6 arc chamber walls. Current, clearing time, and arc voltage were measured for various levels of externally applied magnetic field to show the effect the B-field had on arc interruption at voltage levels of 380Vdc and 600Vdc with currents of 10A and 150A with time constants of 0.7ms and 8ms respectively. These results could be applied for developing DC switching devices for use in future DC power systems.
Important Date
  • Conference Date

    Oct 22

    2017

    to

    Oct 25

    2017

  • Jan 04 2017

    Abstract Notification of Acceptance

  • Mar 10 2017

    Draft Paper Acceptance Notification

  • Jun 30 2017

    Final Paper Deadline

  • Oct 25 2017

    Registration deadline

Contact Information
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