Title :
An Adaptive PMU-based Fault Location Estimation System with a Fault-Tolerance and Load-Balancing Communication Network
Author :
Chuang, Cheng-Long ; Jiang, Joe-Air ; Wang, Yung-Chung ; Chen, Chia-Pang ; Hsiao, Ying-Tung
Author_Institution :
Bio-Ind. Machatronics Eng. Dept. & Biomed. Eng. Inst., Nat. Taiwan Univ., Taipei
Abstract :
Modern fault detection/location technique for an EHV/UHV transmission network usually works based on the data measured by Phaser Measurement Units (PMU). The synchronized voltage and current phasors measured by PMU are transmitted to a monitoring center for analysis. Global Positioning System (GPS) receivers are also equipped with PMU, which is called GPS-PMU, to increase the accuracy of fault detection/location by tagging all of the measured data with time stamps. Once a fault was occurred in the transmission network, the time of those measured data transmitted to the monitoring center is crucial. Therefore, a high-quality communication network is required to reduce the response time of the fault detection/location algorithm. In this study, an evolutionary routing algorithm is developed to handle guarantee the minimal data transmission delay, and also robust against faults in communication system itself. The proposed routing algorithm has been tested through two kinds of experimental simulations, and the result shows that the proposed algorithm can provide minimal transmission delay by balancing the traffic over the communication network, and while the network topology has been changed, the proposed routing algorithm can adapt to the new topology in a very short time without seriously affect the response time of the transmission network fault detection/location algorithm.
Keywords :
electric current measurement; fault location; phase measurement; power system measurement; power transmission faults; telecommunication network routing; telecommunication network topology; telecommunication traffic; voltage measurement; EHV/UHV transmission network; GPS receivers; Global Positioning System receivers; adaptive PMU-based fault location estimation system; current phasors; data transmission delay; evolutionary routing algorithm; fault detection; fault-tolerance communication network; load-balancing communication network; phaser measurement units; synchronized voltage phasors; traffic balancing; Communication networks; Delay; Fault detection; Fault location; Fault tolerant systems; Global Positioning System; Monitoring; Phasor measurement units; Routing; Time measurement;
Conference_Titel :
Power Tech, 2007 IEEE Lausanne
Conference_Location :
Lausanne
Print_ISBN :
978-1-4244-2189-3
Electronic_ISBN :
978-1-4244-2190-9
DOI :
10.1109/PCT.2007.4538486