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Analysis and design of a high-speed permanent magnet characteristic actuator using eddy current effect for high-voltage vacuum circuit breaker

机译:涡流效应的高压真空断路器高速永磁特性执行器的分析与设计

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摘要

This study proposes a high-speed permanent magnet actuator (HSPMA) for high-voltage vacuum circuit breaker (VCB). The HSPMA comprises mainly of an eddy current repulsion force actuator and a permanent magnet (PM) actuator. The structural saliency of HSPMA is described and its control principle is elaborated in details. Finite element method is used and the eddy current is included in the computation of the electro-magnet fields of the HSPMA. The system equations, which couples the magnet field to circuit and mechanical equations, are built in ANSOFT Maxwell and Circuit Editor in this study of the making and breaking procedures of the HSPMA. The simulated characteristics show the design meets the requirement of the high-voltage VCB. The optimal thickness of the eddy current plate is 10 mm. The capacitor also has an economic optimal value of 10,000 µF. The simulated results indicate that the HSPMA has a sound characteristic when compared with circuit breakers with only PM actuator.
机译:这项研究提出了一种用于高压真空断路器(VCB)的高速永磁致动器(HSPMA)。 HSPMA主要由涡流排斥力致动器和永磁体(PM)致动器组成。描述了HSPMA的结构显着性,并详细阐述了其控制原理。使用有限元方法,并且在HSPMA的电磁场计算中包括涡流。该系统方程将磁场与电路方程和机械方程联系起来,并在ANSOFT Maxwell和《电路编辑器》中建立,用于研究HSPMA的制造和断开过程。仿真特性表明,该设计符合高压VCB的要求。涡流板的最佳厚度为10毫米。该电容器的经济最佳值为10,000 µF。仿真结果表明,与仅带有PM执行器的断路器相比,HSPMA具有良好的声音特性。

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