Development of mechanical CBM system for electromagnetically actuated vacuum circuit breaker

被引:0
|
作者
Yano T. [1 ]
Matsunaga T. [2 ]
Arioka M. [2 ]
Koyama K. [3 ]
Takeuchi T. [4 ]
机构
[1] Advanced Technology R and D Center, Mitsubishi Electric Corporation, 8-1-1, Tsukaguchi-Honmachi, Amagasaki
[2] Power Distribution Systems Center, Mitsubishi Electric Corporation, 8, Horai-cho, Marugame
[3] Information Technology R and D Center, Mitsubishi Electric Corporation, 5-1-1, Ofuna, Kamakura
[4] Fukuyama Works, Mitsubishi Electric Corporation, 1-8, Midorimachi, Fukuyama
来源
Yano, Tomotaka (Yano.Tomotaka@ap.MitsubishiElectric.co.jp) | 1600年 / Institute of Electrical Engineers of Japan卷 / 136期
关键词
Condition based maintenance; Electromagnetic actuator; Vacuum circuit breaker;
D O I
10.1541/ieejpes.136.192
中图分类号
学科分类号
摘要
A new mechanical CBM (Condition Based Maintenance) system for an electromagnetically actuated vacuum circuit breaker (VCB) has been developed. This CBM function has a new monitoring method using analysis of the coil current profile of the actuator operation. The VCB has three sets of vacuum interrupters, insulating rods, contact pressure springs and electromagnetic actuators. The electromagnetic actuators control each phase independently. We have clarified the variation in the actuator's current profile by the developed analytical method when the value of friction, contact erosion and driving capacitance changes. We have established a diagnostic method for the mechanical condition using this current profile analysis. With this method, a new remote monitoring system of the mechanical condition using current monitors on the actuator's controller has been developed and mounted on VCB for cubicle type gas insulated switchgears rating from 7.2 kV to 84 kV The maintenance for mechanical parts of VCB changes to the CBM system from the conventional TBM (Time Based Maintenance) system using this monitoring system. The developed mechanical CBM system significantly reduces the life cycle cost including the labor cost of maintenance. © 2016 The Institute of Electrical Engineers of Japan.
引用
收藏
页码:192 / 197
页数:5
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