DocumentCode :
1774073
Title :
Communication research based on of Distributed intelligent Feeder Automation System of the distribution network
Author :
Zhou Zhifeng ; Dong, Albert ; Yuan Qincheng ; Huang Hongyuan
Author_Institution :
CREAT, Beijing, China
fYear :
2014
fDate :
23-26 Sept. 2014
Firstpage :
1
Lastpage :
4
Abstract :
In basic research on the self-healing control technology of Domestic and international distribution network, Proposed several solutions of distribution network self-healing technology, and pointed out the advantages and problems of the various solutions at present. With economic development. Reliability requirements of distribution network have become increasingly demanding. Using intelligent distributed Feeder Automation System by peer to peer communications between the intelligent terminal, and distributed intelligent control decisions, to achieve rapid fault isolation in distribution line. In the environment that Smart Grid is rapidly building, communication network of Distribution network gradually improved. Establish an efficient strong real-time communication system provide favorable conditions of Rapid Self-healing. This paper presents three communication program. based on reliable communication of connection-oriented TCP/IP based on the multicast communication of UDP and publish/subscribe communication of GOOSE protocol and gives a comparative for the three communication program. Systematically describe implementation of the three communication scheme used in intelligent distribution automation system, elaborated system modeling communication scheme and design ideas of GOOSE communication, and provides a solution of GOOSE to implement a typical fault isolation process. We test and verify the three communicate programs on power PC hardware platforms, build on a network test environment in a lab environment, provides real-time and reliability communication test result. Based on the above analysis and verification, GOOSE protocol-based communications solutions has certain advantages in communication efficiency, timeliness and versatility.
Keywords :
computer network reliability; control engineering computing; distributed control; intelligent control; message passing; multicast protocols; peer-to-peer computing; power distribution control; power distribution economics; power distribution faults; power distribution lines; power engineering computing; smart power grids; transport protocols; GOOSE protocol-based communications solutions; UDP multicast communication; communication network improvement; communication program; communication research; connection-oriented TCP-IP communication reliability; distributed intelligent control decisions; distributed intelligent feeder automation system; distribution line; distribution network; domestic distribution network; economic development; intelligent terminal; international distribution network; network test environment; peer-to-peer communications; power PC hardware platforms; publish-subscribe communication; rapid fault isolation process; reliability requirements; self-heating control technology; smart grid; system modeling communication scheme; Abstracts; Artificial intelligence; Data models; Hardware; Irrigation; Reliability; Standards; Communication system; Distributed intelligence; GOOSE; distribution network;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electricity Distribution (CICED), 2014 China International Conference on
Conference_Location :
Shenzhen
Type :
conf
DOI :
10.1109/CICED.2014.6991661
Filename :
6991661
Link To Document :
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