Nova Patents
EP0506319A2

Chaos sensing arc detection.

Abstract

An arc detection method and apparatus is provided for an electric circuit having an electrified conductor (46) connecting a voltage source (26) to a load (30). The arc detector includes a field sensor (62) sensing an electromagnetic field established about the conductor by the occurrence of an electrical arc in the electric circuit, and generating a field responsive signal in response thereto. Arc discrimination circuitry responds to the field sensor and generates an arc indicative signal in response to a random chaotic pattern of the field responsive signal.

EP0506319A2, drawing sheet 1
Sheet 1 of 15

Term

Term ended

Projected expiry passed 23 March 2012, 14.5 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

10 claims: 4 independent, 6 dependent

  1. 1
    An arc detector for an electric circuit including an electrified conductor (46) connecting a voltage source (26) to a load (30), said arc detector comprising a field sensor (62) sensing an electromagnetic field established about said conductor (46) by the occurrence of an electrical arc in said electric circuit, and generating a field responsive signal in response thereto, an arc discrimination circuit (64) responsive to said field sensor (62) and generating an arc indicative signal in response to a random chaotic pattern of said field responsive signal.
  2. 8
    An arc detector for an electric circuit including an electrified conductor (46) connecting a voltage source (26) to a load (30), said arc detector comprising:an E field sensor (66) sensing the E field established about said conductor (46) by the occurrence of an electrical arc in said electric circuit, and generating an E field responsive signal in response thereto;a B field sensor (68) sensing the B field established about said conductor (46) by the occurrence of an electrical arc in said electric circuit, and generating a B field responsive signal in response thereto;a first dual differentiator circuit (FIGS. 4, 7) differentiating said E field responsive signal twice with respect to time to provide the second derivative of said E field responsive signal;a second dual differentiator circuit (FIGS. 5, 8) differentiating said B field responsive signal twice with respect to time to provide the second derivative of said B field responsive signal;an arc indicative signal circuit (658) responsive to said first and second dual differentiator circuits and generating an arc indicative signal when both said E and B field responsive signals have a random chaotic pattern.
  3. 9
    An arc detector for an electrical current distribution circuit including a voltage source (26) of predetermined excitation frequency serially coupled to a load (30) and an electro-responsive circuit breaker (34) by an electrified conductor (46), said arc detector comprising a field sensor (62) sensing an electromagnetic field established about said conductor (46) by the occurrence of an electrical arc in said distribution circuit, and generating a field responsive signal in response thereto, an arc discrimination circuit (64) responsive to said field sensor (62) and generating an arc indicative signal in response to a random chaotic pattern of said field responsive signal, a trip circuit (58, 60) responsive to said arc discrimination circuit (64) and tripping said circuit breaker (34) to an open circuit condition in response to said arc indicative signal.
  4. 10
    An arc detector for an electrical current distribution circuit including a voltage source (26) of predetermined excitation frequency serially coupled to a load (30) and an electro-responsive circuit breaker (34) by an electrified conductor (46), said arc detector comprising:an E field sensor (66) sensing the E field established about said conductor (46) by the occurrence of an electrical arc in said distribution circuit, and generating an E field responsive signal in response thereto;a B field sensor (68) sensing the B field established about said conductor (46) by the occurrence of an electrical arc in said distribution circuit, and generating a B field responsive signal in response thereto;a first dual differentiator circuit (FIGS. 4, 7) differentiating said E field responsive signal twice with respect to time to provide the second derivative of said E field responsive signal;a second dual differentiator circuit (FIGS. 5, 8) differentiating said B field responsive signal twice with respect to time to provide the second derivative of said B field responsive signal;a trip circuit (58, 60) responsive to said first and second dual differentiator circuit and tripping said circuit breaker (34) to an open circuit condition when both said E field responsive signal and said B field responsive signal have a random chaotic pattern.