DocumentCode :
1638915
Title :
A study on the reclosing in power system using energy function
Author :
Yukita, Kazuto ; Nakajima, Koichi ; Hosoe, Tadashi ; Goto, Yasuyuki ; Ichiyanagi, Katsuhiro ; Mizutani, Yoshibumi
Author_Institution :
Dept. of Electr. & Electron. Eng., Aichi Inst. of Technol., Toyota, Japan
Volume :
3
fYear :
2004
Firstpage :
1029
Abstract :
This paper proposes the high-speed reclosing operating method to improve for the stability in the power system. The proposed method calculates the reclosing time, taking the case of standard in which the reclosing is not done using the energy function of generator phase angle. And the execution of reclosing time is calculated, considering the acceleration/deceleration energy of the generator in during fault. It can be expected that the delta of generator is suppressed by this optimum reclosing operation. Therefore, the system stability can be expected to improvement by carrying out the high-speed reclosing, when the fault arose. At present, it has been set at the value which seems to be optimum considering various problems in the reclosing time. However, in those methods, the system stability improvement effect cannot be expected. It was demonstrated that the high-speed reclosing method have depression effect of the delta in the computer simulation.
Keywords :
digital simulation; power generation faults; power system transient stability; IEEJ WEST 10-machine system; acceleration-deceleration energy; computer simulation; generator faults; high-speed reclosing method; infinite bus system; power system stability; transient stability; Acceleration; Distributed power generation; Photovoltaic systems; Power generation; Power system stability; Power systems; Power transmission lines; Voltage; Wind energy generation; Wind power generation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Universities Power Engineering Conference, 2004. UPEC 2004. 39th International
Conference_Location :
Bristol, UK
Print_ISBN :
1-86043-365-0
Type :
conf
Filename :
1492182
Link To Document :
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