Title :
MV generator low-resistance grounding and stator ground fault damage
Author :
Wu, Alex ; Tang, Yousin ; Finney, Dale
Author_Institution :
Global Eng. Co., Roswell, GA, USA
Abstract :
The purposes of This work are: 1) to examine the generator transient over-voltage and currents under the low-resistance ground fault conditions, and also to evaluate their corresponding stator ground fault damages, and 2) to establish an acceptable maximum system ground fault level. For comparison purposes, three versions of low-resistance grounding systems have been considered and they are: a low-resistance grounding system with a neutral breaker at the generator (hereinafter called a "neutral breaker system"); a low-resistance grounding system with the generator neutral low resistor being switched to a high-resistor after a stator ground fault (hereinafter called a "hybrid system"); and a low-resistance grounding system similar to the current practice (hereinafter called a "traditional system"). The simulation study is conducted with the aid of the electro magnetic transient program (EMTP). An experimental analog generator model is also used to verify the simulation results.
Keywords :
EMTP; IEEE standards; earthing; electric generators; electric resistance; machine protection; overcurrent protection; overvoltage protection; power distribution faults; power distribution protection; power system simulation; power system transients; stators; 1200 A; 200 to 400 A; EMTP; IEEE working group; MV generator; analog generator model; electro magnetic transient program; generator open-circuit time constant; ground fault current; ground fault protection; high-resistance grounded system; hybrid system; low-resistance grounding; medium-voltage generators; medium-voltage power distribution system; neutral breaker system; neutral ground current; over-voltage currents; stator ground fault damage; traditional system; transient overvoltage; Fault currents; Grounding; Medium voltage; Power distribution; Power generation; Protection; Pulp and paper industry; Resistors; Stators; Voltage control;
Conference_Titel :
Industry Applications Conference, 2004. 39th IAS Annual Meeting. Conference Record of the 2004 IEEE
Print_ISBN :
0-7803-8486-5
DOI :
10.1109/IAS.2004.1348818