Power supply of electronic current transformer for power bus with low current

被引:0
作者
Zhao, Qiangsong [1 ,2 ]
Ye, Yongqiang [1 ]
Xu, Guofeng [1 ]
Zhou, Xiaoyu [1 ]
机构
[1] College of Automation Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing
[2] School of Electronic Information, Zhongyuan University of Technology, Zhengzhou
来源
Dianli Xitong Zidonghua/Automation of Electric Power Systems | 2015年 / 39卷 / 19期
关键词
Current transformer; Dead zone; Power supply; Seven-level charge pump circuit; Silicon steel; Super capacitor;
D O I
10.7500/AEPS20141129013
中图分类号
学科分类号
摘要
Facing the existence of the power supply dead zone and the coil prone to saturation in conventional current transformers, a new current transformer power supply with a seven-level charge pump circuit is presented based on energy harvesting. The silicon steel material with smaller magnetic permeability is used as the iron core. And the magnetic resistance of iron core magnetic circuit is increased by opening an air gap to make it hard for the saturation of iron core. Then, the charge transferred from the charge pump is stored by the super-capacitor. The power managing module is designed to control the energy-release and power-supply channel. Finally, a power supply prototype is developed and tested by taking wireless temperature measuring module and GPRS module controlled by low-power-consumption singlechip as the load. Experimental results show that the power supply prototype is able to provide sufficient energy when the power transmission line current is 1 A. Compared with the current transformer power supply with a secondary winding of 1 500 turns, the power supply designed with a secondary winding of 500 turns has a better performance when the power transmission line current is small. ©2015 Automation of Electric Power Systems Press
引用
收藏
页码:121 / 125
页数:4
相关论文
共 14 条
  • [1] Zangl H., Bretterklieber T., Brasseur G., A feasibility study on autonomous online condition monitoring of high-voltage overhead power lines, IEEE Trans on Instrumentation and Measurement, 58, 5, pp. 1789-1796, (2009)
  • [2] Chen J., Fan C., Hu T., Et al., Study on monitoring system of transmission line icing considering the state of overhead transmission lines, Power System Protection and Control, 40, 15, pp. 93-98, (2012)
  • [3] Xiong L., Song D., He Y., Et al., Power supply of online monitoring equipment for transmission line, Electric Power Automation Equipment, 32, 7, pp. 129-133, (2012)
  • [4] Toussaint K., Pouliot N., Montambault S., Transmission line maintenance robots capable of crossing obstacles: state-of-the-art review and challenges ahead, Journal of Field Robotics, 26, 5, pp. 477-499, (2009)
  • [5] Qiu H., Duan X., Zou J., A laser powered electronic current transformer based on LPCT, Transactions of China Electrotechnical Society, 23, 4, pp. 66-72, (2008)
  • [6] Liu Z., Mo W., The key technology of ECT with self-excitation power supply, Automation of Electric Power Systems, 33, 6, pp. 67-69, (2009)
  • [7] Liu Y., Sheng G., Wang K., Et al., A new design of current transformer energy harvesting power supply based on phase angle control method, Automation of Electric Power Systems, 35, 19, pp. 72-76, (2011)
  • [8] Xie W., Dai Y., Design of floating power for current transducers, Electric Power Automation Equipment, 31, 7, pp. 140-142, (2011)
  • [9] Du L., Li X., Lei J., Et al., Research on draw-out power supply for power cable distribution temperature monitoring system, Chinese Journal of Scientific Instrument, 33, 2, pp. 384-390, (2012)
  • [10] Zhao Q., Chen B., Ye Y., Et al., A current transformer energy-obtaining power supply based on five-level charge pump circuit, Automation of Electric Power Systems, 38, 15, pp. 118-123, (2014)