DocumentCode
389838
Title
Multi agent based emergency operation of quality control center considering uncooperative situation
Author
Hara, Ryoichi ; Muranaka, Takehiro ; Kita, Hiroyuki ; Tanaka, Eiichi ; Hasegawa, Jun
Author_Institution
Hokkaido Univ., Sapporo, Japan
Volume
2
fYear
2002
fDate
6-10 Oct. 2002
Firstpage
1185
Abstract
The authors have proposed FRIENDS as a concept of the future electric power delivery system. In FRIENDS, new facilities called Quality Control Centers (QCCs) are installed between distribution substation and customers and they constitute new high voltage distribution network in which QCC becomes node. One of the most important function of FRIENDS is to improve the reliability of power supply by utilizing the distributed generators as backup generators. In order to use DGs as backup generators, the fast and effective operation manner has to be developed. Under the above backgrounds, the authors have proposed the distributed autonomous emergency operation of FRIENDS network under the assumption that all QCCs are completely generous to cooperative emergency operation. This paper proposes the advanced operation algorithm which can correspond to the partially uncooperative situation and investigates the validity of the advanced algorithm through the Monte Carlo simulation.
Keywords
Monte Carlo methods; distributed power generation; multi-agent systems; power distribution control; power supply quality; quality control; FRIENDS; Monte Carlo simulation; advanced operation algorithm; control design; control simulation; distributed autonomous emergency operation; distributed backup generators; distribution substation; electric power delivery system; multi agent based emergency operation; power distribution; power supply reliability; quality control center; uncooperative situation; Distributed power generation; Hybrid power systems; Integrated circuit interconnections; Load flow; Power generation; Power quality; Power system reliability; Quality control; Standby generators; Switches;
fLanguage
English
Publisher
ieee
Conference_Titel
Transmission and Distribution Conference and Exhibition 2002: Asia Pacific. IEEE/PES
Print_ISBN
0-7803-7525-4
Type
conf
DOI
10.1109/TDC.2002.1177646
Filename
1177646
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