Experimental research of the influence of a ferromagnetic core on the speed of an induction-dynamic release with turning anchor type

V. Lytvynenko, A. Sereda, I. Varshamova, Olena Korol
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Abstract

Circuit breakers for overcurrent protection of semiconductor converters limit the duration and amplitude of the overcurrent at such a level that its thermal effect does not exceed the maximum allowable thermal protection index of the protected semiconductor device. The limitation of the thermal action of the short-circuit current is achieved by reducing the operation time of the circuit breaker. The design of the circuit breaker is changed in such a way that instead of the basic electromagnetic release is used an induction-dynamic release, which consists of an inductor with a ferromagnetic core and a rotary armature in the form of a copper disk. The electrodynamic force producing by the induction-dynamic release for quick operation is determined by the coefficient of mutual inductance of the inductor coil and the armature. Using of a ferromagnetic core entailed an increase in the coefficient of mutual inductance of the coil and armature, therefore, an increase in the electrodynamic force producing by the release, and a decrease in own tripping time of the circuit breaker. On a prototype, an experimental study of the proper operation time of the release was carried out at various values of the electrical parameters of the capacitor bank of the inductor power supply, the winding parameters of the inductor coil and the disk dimensions. The research results have proved both a decrease in the tripping time of the circuit breaker while conserving the energy of the capacitor bank of the inductor, and a decrease in the required energy of the capacitor bank to power the inductor while maintaining the minimum tripping time of the circuit breaker. Reducing the energy of the capacitor bank of the inductor made it possible to reduce the capacity and voltage of the capacitor bank of the supply of the release, and, consequently, its dimensions.
铁磁磁芯对旋转锚式感应动态释放速度影响的实验研究
用于半导体变换器过流保护的断路器限制过流的持续时间和幅度,使其热效应不超过被保护半导体器件的最大允许热保护指数。限制短路电流的热作用是通过减少断路器的操作时间来实现的。断路器的设计是这样一种方式,而不是改变的基本电磁释放induction-dynamic发布使用,包括与铁磁核心和一个旋转电枢电感的铜盘。快速操作的感应动态释放产生的电动力由电感线圈和电枢的互感系数决定。铁磁铁芯的使用增加了线圈和电枢的互感系数,从而增加了释放产生的电动力,减少了断路器自身脱扣时间。在一个样机上,对电感电源电容器组的电气参数、电感线圈的绕组参数和盘的尺寸的不同取值下,进行了适当的释放操作时间的实验研究。研究结果表明,在节省电感电容组能量的同时,减少了断路器的脱扣时间;在保持断路器最小脱扣时间的同时,减少了电容器组为电感供电所需的能量。降低电感电容器组的能量,可以降低释放电源电容器组的容量和电压,从而减小其尺寸。
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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