Research of a new type of fault current energized fast repulsive force actuator

Enyuan Dong, Qiao Li, Yu Tian, Taotao Qin, J. Zou
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引用次数: 1

Abstract

Based on the characters of repulsive force actuator for its fast speed in the opening and closing process, a kind of new-type fast circuit breaker energized by fault current was designed in this paper. With bus shunt as excitation current, double coil tandem repulsive force actuator and permanent magnetic actuator were composed together. This hybrid circuit breaker with new-type of excitation doesn't need receiving the order from logical judgment system or capacitor energy storage system. With spontaneous rapidity, its rapid opening speed is directly proportional related with the short current value. It has fast speed of response and action. On the basis of this structure, the simulation analysis and optimization was performed. Firstly, the coils' temperature-rise and turn-to-turn voltage under normal load were calculated to guarantee thermal stability and insulation reliability. Then the effect of output repulsive force was also analyzed to ensure the action's reliability. Besides, the break reliability was discussed when the short current meets the first zero crossing under different circuit phases and on this account the parameters of opening spring was optimized. Finally, the action mechanism of this new-type self-excitation hybrid circuit breaker was discussed in this paper. Based on finite element analysis and simulations, the fault current energized type hybrid circuit breaker prototype was manufactured. The experimental data verified that the new actuator can break circuit quickly and successfully under the presetting short-circuit threshold of 2.4kA.
一种新型故障电流激励快速斥力执行器的研究
针对排斥力执行器在启闭过程中速度快的特点,设计了一种由故障电流驱动的新型快速断路器。采用母线并联作为励磁电流,将双线圈串联斥力执行器与永磁执行器组合在一起。这种新型励磁混合断路器不需要接受逻辑判断系统或电容储能系统的指令。由于具有自发快速性,其快速开启速度与短电流值成正比关系。它具有快速的反应和行动速度。在此基础上进行了仿真分析和优化。首先,计算了正常负载下线圈的温升和匝间电压,以保证热稳定性和绝缘可靠性。然后分析了输出斥力对动作可靠性的影响。此外,还讨论了短路电流在不同回路相下遇到第一次过零时的开断可靠性,并以此为基础对开断弹簧参数进行了优化。最后,对这种新型自激混合断路器的作用机理进行了讨论。在有限元分析和仿真的基础上,制作了故障电流激励型混合断路器样机。实验数据验证了该驱动器在预设的短路阈值为2.4kA的情况下能够快速、成功地断路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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