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Conceptual design of a high-speed electromagnetic switch for a modified flux-coupling-type SFCL and its application in renewable energy system

机译:改进的磁通耦合型SFCL高速电磁开关的概念设计及其在可再生能源系统中的应用

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摘要

The modified flux-coupling-type superconducting fault current (SFCL) is a high-efficient electrical auxiliary device, whose basic function is to suppress the short-circuit current by controlling the magnetic path through a high-speed switch. In this paper, the high-speed switch is based on electromagnetic repulsion mechanism, and its conceptual design is carried out to promote the application of the modified SFCL. Regarding that the switch which is consisting of a mobile copper disc, two fixed opening and closing coils, the computational method for the electromagnetic force is discussed, and also the dynamic mathematical model including circuit equation, magnetic field equation as well as mechanical motion equation is theoretically deduced. According to the mathematical modeling and calculation of characteristic parameters, a feasible design scheme is presented, and the high-speed switch’s response time can be less than 0.5 ms. For that the modified SFCL is equipped with this high-speed switch, the SFCL’s application in a 10 kV micro-grid system with multiple renewable energy sources are assessed in the MATLAB software. The simulations are well able to affirm the SFCL’s performance behaviors.
机译:改进的磁通耦合型超导故障电流(SFCL)是一种高效的电气辅助设备,其基本功能是通过控制通过高速开关的磁路来抑制短路电流。本文以电磁斥力机制为基础,对高速开关进行了概念设计,以促进改进型SFCL的应用。关于由一个可移动的铜盘,两个固定的开关线圈组成的开关,讨论了电磁力的计算方法,并建立了包括电路方程,磁场方程和机械运动方程的动态数学模型。从理论上推论。根据数学模型和特征参数的计算,提出了一种可行的设计方案,高速开关的响应时间可以小于0.5ms。为此,改进型SFCL配备了该高速开关,因此在MATLAB软件中评估了SFCL在具有多个可再生能源的10kV微电网系统中的应用。仿真可以很好地确认SFCL的性能行为。

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