DocumentCode :
1693433
Title :
Application of synthetic relative measuring method based on IEEE1588 in on-line monitoring of dielectric loss angle
Author :
Qin LiJun ; Guo Qing ; Wang Lei ; Zheng ShenRui
Author_Institution :
Dept. of Electr. & Electron. Eng., North China Electr. Power Univ., Beijing, China
Volume :
1
fYear :
2011
Firstpage :
79
Lastpage :
84
Abstract :
Since capacitive equipment is widely installed in power system, it is very important to assess the insulation condition of capacitive apparatus. Synthetic relative measuring method in on-line monitoring of dielectric loss angle is an effective measure, which can greatly overcome the shortcomings of the traditional method and improve the measuring accuracy. The paper proposes a general method to watch the insulation condition of the capacitive equipment by analyzing the trend of established failure judgment matrices. However, the method requires high sampling time synchronization precision for the reason that the order of angle deviation between the measured leakage currents can reach 10-5 or 10-6, so even only one microsecond sampling deviation may bring about great error up to 10-2, so that the insulation condition of capacitive apparatus may be misjudged. Although some high-end GPS products can reach the time synchronization accuracy of sub microsecond, they need so much investment and are unsafe. In order to solve the problem, the paper proposes a low cost and IEEE1588-based time synchronization system implemented to reduce the measurement error caused by sampling time synchronization deviation between the different measured equipment. Time synchronization level of the IEEE1588-based system is nanosecond. Thus, the diagnostic accuracy of the proposed method is improved by IEEE1588-based system.
Keywords :
Global Positioning System; capacitance measurement; dielectric loss measurement; leakage currents; matrix algebra; measurement errors; power system measurement; synchronisation; IEEE1588-based time synchronization system accuracy; capacitive apparatus; capacitive equipment; dielectric loss angle; failure judgment matrices; high sampling time synchronization precision; high-end GPS product; insulation condition; leakage current; measurement error; microsecond sampling time synchronization deviation; online monitoring; synthetic relative measuring method; Clocks; Dielectric loss measurement; Dielectrics; Loss measurement; Synchronization; IEEE1588; capacitive equipment; dielectric loss angle; synthetic relative measuring method;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Power System Automation and Protection (APAP), 2011 International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4244-9622-8
Type :
conf
DOI :
10.1109/APAP.2011.6180389
Filename :
6180389
Link To Document :
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