DocumentCode :
748429
Title :
In-service evaluation of motor and generator stator windings using partial discharge tests
Author :
Stone, Greg C. ; Sedding, Howard G.
Author_Institution :
IRIS Power Eng., Mississauga, Ont., Canada
Volume :
31
Issue :
2
fYear :
1995
Firstpage :
299
Lastpage :
303
Abstract :
Partial discharges (corona) are a symptom of most types of deterioration of motor and generator stator windings rated 4 kV and above. Experience indicates that partial discharges occur years before failure. This leaves sufficient time to plan corrective maintenance to avoid the in-service failure of the motor or generator. This paper describes a new type of partial discharge test which can be performed by plant personnel during normal operation of the machine, thus enabling all users of large machines to plan maintenance. The key requirement of the new test is to remove all the interference caused by other sparking and discharging sources in a plant. Such noise has lead to false indications of stator winding deterioration in the past. The new test uses either high-voltage capacitive sensors, high-frequency current transformers, or 1000 MHz electromagnetic couplers to detect the discharge signals. These signals are processed on a pulse-by-pulse basis by a specialized electronic instrument to remove noise and the remaining partial discharges are then categorized according to number, magnitude, and phase position. The test has been implemented on over 100 machines, and the results appear promising
Keywords :
automatic test equipment; automatic testing; corona; current transformers; electric generators; electric motors; electric sensing devices; high-frequency transformers; instrument transformers; insulation testing; machine insulation; machine testing; partial discharges; power engineering computing; stators; 1000 MHz; 4 kV; corona; corrective maintenance; discharge signals detection; electromagnetic couplers; electronic instrument; failure; generator; high-frequency current transformers; high-voltage capacitive sensors; in-service evaluation; interference suppression; motor; partial discharge tests; personnel; stator windings; Capacitive sensors; Corona; Current transformers; Electromagnetic coupling; Interference; Partial discharges; Performance evaluation; Personnel; Stator windings; Testing;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/28.370277
Filename :
370277
Link To Document :
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