DocumentCode :
1387044
Title :
Protective relay setting of the tie line tripping and load shedding for the industrial power system
Author :
Chen, Chao-Shun ; Ke, Yu-Lung ; Hsu, Cheng-Ting
Author_Institution :
Dept. of Electr. Eng., Nat. Sun Yat-Sen Univ., Kaohsiung, Taiwan
Volume :
36
Issue :
5
fYear :
2000
Firstpage :
1226
Lastpage :
1234
Abstract :
This paper presents the proper underfrequency relay settings to enhance the operation of industrial power systems with cogeneration facilities. A cogeneration unit was installed in the plant in 1996 to supply the power demand of the plant. The cogeneration unit always faces the shutdown problem when a severe fault occurs on the nearby Taipower network. It is, therefore, necessary to investigate plant protective relay settings to prevent a whole plant blackout when the contingency occurs. A transient stability analysis has been performed by considering both the detailed models of the cogenerators with the governor and exciter control systems and the external utility power system. The underfrequency relay settings for tie line tripping and load shedding are designed to prevent the tripping of the cogeneration units so that the electricity service to the critical loads of the industrial customer can be maintained in case serious external disturbances such as short circuit faults occur. In this study, the scheme of underfrequency relay settings has been developed for the power system of a large synthetic rubber manufacturer with a large cogeneration unit. Three study cases have been selected for the transient stability analysis to verify the effectiveness of the proposed protective relay setting
Keywords :
cogeneration; industrial power systems; load shedding; power system faults; power system protection; power system relaying; power system transient stability; relay protection; rubber industry; Taipower; cogeneration facilities; contingency; external disturbances; industrial power system; load shedding; protective relay setting; synthetic rubber manufacture; tie line tripping; transient stability analysis; underfrequency relay settings; utility power system; Circuit faults; Cogeneration; Industrial power systems; Power system modeling; Power system protection; Power system relaying; Power system transients; Protective relaying; Stability analysis; Transient analysis;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/28.871268
Filename :
871268
Link To Document :
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