Title :
Wide-Area Protection Fault Identification Algorithm Based on Multi-Information Fusion
Author :
Zhenxing Li ; Xianggen Yin ; Zhe Zhang ; Zhiqin He
Author_Institution :
State Key Lab. of Adv. Electromagn. Eng. & Technol., Huazhong Univ. of Sci. & Technol., Wuhan, China
Abstract :
Wide-area protection systems can be used to avoid complicated setting coordination of traditional backup relays and effectively prevent cascading trip events. Since they depend on a multisource data of transmission network to identify a faulted element, fault-tolerance capacity of the system is required. This paper proposes a faulted element identification algorithm based on multisource information fusion for wide-area protection. A fault identification encoding method based upon grid topology is presented. Meanwhile, the operation information of traditional primary/backup relays and the status of breakers are utilized to establish fitness function and state expectation function. The fitness of protected elements is used to determine their fault probability; and faulted elements are identified with high fault tolerance. The property of the presented algorithm is validated by simulation tests based on an IEEE 10-generator 39-bus system.
Keywords :
fault tolerance; power grids; power transmission faults; power transmission protection; probability; relay protection; IEEE 10-generator 39-bus system; backup relays; fault element identification algorithm; fault identification encoding method; fault probability; fault-tolerance capacity; fitness function; grid topology; multi-information fusion; multisource data; multisource information fusion; primary relays; state expectation function; transmission network; wide-area protection; Circuit faults; Delays; Fault diagnosis; Fault tolerance; Relays; Wireless application protocol; Expectation function; fault identification; fitness function; information fusion; wide-area protection;
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2013.2247638