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© ABB Group October 24, 2017 | Slide 1 Series Capacitor Application Studies B. (Ben) R. Shperling Albert J. F. Keri Jason Watterson August 3, 2017 NYPA ABB (Consulting)

Series Capacitor Application Studies

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Page 1: Series Capacitor Application Studies

© ABB Group October 24, 2017 | Slide 1

Series Capacitor Application StudiesB. (Ben) R. Shperling Albert J. F. Keri Jason Watterson

August 3, 2017

NYPA ABB (Consulting)

Page 2: Series Capacitor Application Studies

Selected Studies

a) Current waveform analysis for detection of subsynchronous resonance (SSR) conditions.

b) Line terminal breaker transient recovery voltages (TRV).

c) Induced voltages and currents in the opened phases, in thevicinity of energized lines.

Page 3: Series Capacitor Application Studies

The system with the series capacitors

Page 4: Series Capacitor Application Studies

Subsynchronous Resonance (SSR)

Page 5: Series Capacitor Application Studies

System Electrical Damping versus Rotor Reference Frame Frequency with SC1 & SC2 in service (a) and shorted (b)

Page 6: Series Capacitor Application Studies

Short-time frequency spectra of voltage and current at a generator terminals, a) with & b) without SSR characteristics [9]

fe = f0 ± for

a) b)

Page 7: Series Capacitor Application Studies

Series Capacitors and Line Breaker Transient Recovery Voltage

Page 8: Series Capacitor Application Studies

a) Series capacitor bank circuit, b) HV modules of the Fast Protective Device with and without housing: Arc Plasma

Injector (API) and Fast Contact (FC).

a) b)

Page 9: Series Capacitor Application Studies

Fault locations on the compensated line between substations B and C

Page 10: Series Capacitor Application Studies

Maximum TRV and corresponding time for a) the series compensated lines with FPD and b) without the series capacitor bank

a)

b)

Page 11: Series Capacitor Application Studies

Maximum TRV on the B-C line circuit breakers (a) with and (b) without series capacitors for a three phase fault clearing.

Page 12: Series Capacitor Application Studies

Maximum TRV on the D-A line circuit breakers (a) with and (b) without series capacitors for a two line-to-ground fault clearing.

Page 13: Series Capacitor Application Studies

Maximum TRV on the D-C line circuit breakers (a) with and (b) without series capacitors for a two line-to-ground fault clearing

Page 14: Series Capacitor Application Studies

Induced Electrostatic & Electromagnetic Coupling

Page 15: Series Capacitor Application Studies

© ABB GroupOctober 24, 2017 | Slide 15

Workers maybe exposed to electrostatic and electromagnetic coupling from lines inthe vicinity.

Page 16: Series Capacitor Application Studies

Induced Voltages and Currents (rms) in Opened Phases

Install and close grounding switches at the line terminals.Series capacitors on the open line should be bypassed.Install temporary protective grounds (TPG) at the work area.Adhere to the OSHA 1910.269 rules of “order of connection” and “order of removal” of the TPG.The provided induced voltage and current levels should be referred to in order to determine the TPG requirements.

Page 17: Series Capacitor Application Studies

Conclusions

The current waveform analysis identifies the fault events that may be of SSR concern and suggest frequencies and magnitude setting for relaying at the generator site.The extensive line breaker TRV studies show that, the application of

the Fast Protective Device (FPD), prevents the breaker transient recovery voltage increase.The induced voltages and currents for series compensated lines may

be of safety concern. Recommendations, including shorting of the series capacitors, during line maintenance are provided.