EP1322016A2

Arc fault detector immune to dimmer transients and a circuit breaker incorporating the same

Abstract

Tripping of a circuit breaker (11) by an arc fault detector (33) is blocked by a disable circuit (51) upon detection of a transient associated with cold turn-on of an incandescent bulb powered by a dimmer. The peak value of pulses generated by the bandpass filter (41) of the arc detector in response to step increases in the ac current is decayed approximately exponentially. The amplitude of each pulse is compared with upper and lower percentage limits of the decaying peak value. If the amplitudes of the pulses remain below the upper threshold for about 3 to 4 half cycles and exceed the lower threshold each half cycle, a dimmer transient is identified and logic is set to block generation of a false arc signal.

EP1322016A2, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 5 December 2022, 3.8 years ago.

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15 claims: 2 independent, 13 dependent

  1. 1
    Apparatus (33) for detecting arc faults generating step changes in current each time an arc is struck in an ac electrical circuit (13) having a dimmer generating in successive half cycles step changes in current which under certain transient conditions produce a dimmer transient current in which the step changes in current decay in amplitude in successive half cycles approximately exponentially from an initial transient value to a steady state value, the apparatus comprising:pulse generating means (37) for generating a pulse signal having a pulse for each step change in current in the ac electrical circuit;response means (35,39) responsive to repeated pulses generated by step changes in current above the steady state value for generating an arc signal;and disabling means (51) responsive to the pulse signal for preventing the response means from generating the arc signal when the pulses in the pulse signal track the dimmer transient current within a predetermined margin.
  2. 2
    The apparatus (33) of Claim 1, wherein the disabling means (51) comprises a peak detector (59) generating a decaying peak signal which is initially proportional to the initial value of the step change in dimmer transient current and which then decays.
  3. 3
    The apparatus (33) of Claim 2, wherein the decaying peak signal decays approximately exponentially.
  4. 4
    The apparatus (33) of Claim 2, wherein the disabling means (51) further includes tracking means (54) for tracking the decaying peak signal and generating a disable signal disabling the response means (35) only so long as amplitude of the pulse signal remains less than an upper percentage of the decaying peak signal and more than a lower percentage of the decaying peak signal.
  5. 5
    The apparatus (33) of Claim 4, wherein the tracking means (54) include a first timer (61) blocking generation of the disable signal until the pulse signal has remained less than the upper percentage of the decaying pulse signal for a selected time period.
  6. 6
    The apparatus (33) of Claim 5, wherein the selected time period is a predetermined number of half cycles of the ac current.
  7. 7
    The apparatus (33) of Claim 6, wherein the number of half cycles is at least three.
  8. 8
    The apparatus (33) of Claim 5, wherein the tracking means (54) further includes a second timer (63) blocking generation of the disable signal when the pulse signal does not exceed the lower percentage of the decaying peak signal during each half cycle of the ac current.
  9. 9
    The apparatus (33) of Claim 4, wherein the peak detector (59) includes a reference signal generator (85,87,89) generating a first reference signal which is the upper percentage of the decaying peak signal and a second reference signal which is the lower percentage of the decaying peak signal, and wherein the tracking means (54) comprises a first comparator (55) comparing the pulse signal to the first reference signal, a second comparator (57) comparing the pulse signal to the second reference signal, and logic means (67) generating a disable signal when the first comparator indicates that the pulse signal is less than the first reference signal and the second comparator indicates that the pulse signal is more than the second reference signal.
  10. 10
    The apparatus (33) of Claim 9, wherein the logic (67) is digital logic and the tracking means (54) includes first blocking means (61) for delaying the first comparator from setting the digital lock logic for generating the disable signal until the pulse signal has remained below the first reference signal for a predetermined number of half cycles.
  11. 11
    The apparatus (33) of Claim 10, wherein the tracking means (54) includes second blocking means (63,65) setting the digital logic to block generation of the disable signal when the pulse signal does not exceed the second reference signal during a half cycle.
  12. 12
    The apparatus (33) of Claim 11, wherein the first and second blocking means (61,63) comprise a capacitor (95,101) and a resistor (97,103) connected in series between a voltage source and ground, and a diode (99,105) connected to a node (98,107) between the capacitor and the resistor and the respective comparator (55,57), the node also being connected to the digital logic (67).
  13. 13
    An arc fault circuit breaker (11) providing protection from arc faults generating step changes in current each time an arc is struck in an ac electrical circuit (13) having the dimmer generating in successive half cycles step changes in current which under certain transient conditions produce a dimmer transient current in which the step changes in current decay in amplitude in successive half cycles approximately exponentially from an initial transient value to a steady state value, the circuit breaker comprising:separable contacts (19);an operating mechanism (21) opening the separable contacts in response to a trip signal;and a trip unit (23) generating a trip signal in response to selected current conditions in the electrical circuit, and including an arc fault detector (33) generating a trip signal in response to an arc fault, the arc fault detector comprising: pulse generating (37) means for generating a pulse signal having a pulse for each step change in current in the AC electrical circuit;response means (35,39) responsive to repeated pulses generated by step changes in current above the steady state value for generating the trip signal;and disabling means (51) responsive to the pulse signal for preventing the response means for generating the arc signal when the pulses in the pulse signal track the dimmer transient current within a predetermined margin.
  14. 14
    The circuit breaker (1) of Claim 13, wherein the disabling means (51) comprises a peak generator (59) generating a decaying peak signal which is initially proportional to the initial value of the step change in dimmer transient current and which then decays approximately exponentially, and tracking means (54) for tracking the decaying peak signal and generating a disable signal which disables the response means from generating a trip signal only so long as the amplitude of the pulse signal remains less than an upper percentage of the decaying peak signal and more than a lower percentage of the decaying peak signal.
  15. 15
    The circuit breaker of Claim 14, wherein the tracking means (54) includes a first timer (61) blocking generation of the disable signal until the pulse signal has remained less than the upper percentage of the decaying peak signal for a predetermined number of half cycles and a second timer (63) blocking generation of the disable signal when the pulse signal does not exceed the lower percentage of the decaying peak signal during each half cycle.