DocumentCode :
1761133
Title :
A Novel Fault Current Control Scheme to Reduce Synchronous DG´s Impact on Protection Coordination
Author :
Yazdanpanahi, Hesam ; Wilsun Xu ; Yun Wei Li
Author_Institution :
Electr. & Comput. Eng., Univ. of Alberta, Edmonton, AB, Canada
Volume :
29
Issue :
2
fYear :
2014
fDate :
41730
Firstpage :
542
Lastpage :
551
Abstract :
Synchronous-machine DGs are well known to cause miscoordination of distribution system protections because of the generator´s ability to contribute large fault currents to the fault. This paper proposes a field discharge circuit to limit the generator´s fault current, thus leading to a synchronous-machine DG with little impact on distribution system protection. In this paper, the operation of a solid-state switch-based field discharge circuit is studied, and its effects on the generator´s output current during the fault are investigated. It is shown that the proposed scheme removes the steady-state component of the fault current and accelerates the decay of the transient ac component of the current. The results demonstrate that the proposed field discharge circuit is sufficient to prevent miscoordination of the feeder protections when short time-delay and/or inverse-time overcurrent relays are involved in the protection scheme.
Keywords :
distributed power generation; electric current control; overcurrent protection; power distribution protection; power generation control; power generation faults; relay protection; distribution system protection; distribution system protections miscoordination; fault current control scheme; feeder protections; field discharge circuit; generator output current; inverse-time overcurrent relays; protection coordination; protection scheme; short time-delay; solid-state switch-based field discharge circuit; steady-state component; synchronous DG; synchronous-machine DG; transient ac component; Circuit faults; Discharges (electric); Fault currents; Generators; Resistance; Steady-state; Windings; Compatibility; distributed generation (DG); fault; field discharge; overcurrent protection; synchronous generator;
fLanguage :
English
Journal_Title :
Power Delivery, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8977
Type :
jour
DOI :
10.1109/TPWRD.2013.2276948
Filename :
6585819
Link To Document :
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