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Simulation of an improved operating method for vacuum circuit breakers with permanent magnetic actuators

机译:具有永磁执行器的真空断路器的改进操作方法的仿真

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摘要

One disadvantage of traditional permanent magnetic actuators (PMA) in vacuum circuit breakers (VCB) is that it is difficult to improve the velocity characteristics so that the interruption capacity of VCBs will be constrained. The objective of this paper is to propose a method for controlling PMAs to enhance the velocity characteristics. In contrast to the traditional control method that adopts only one coil in an opening or closing operation, the new method adopts both coils in the PMA simultaneously and controls the direction of the current in coils. Then a simulation model that involves coupled physical fields is constructed according to the new method. Moreover, the simulation results indicate that the initial velocity can be increased in the opening operation and the velocity characteristics in the closing operation can be optimized. In addition, the operating current can be reduced so that it is easy to control. Finally, experimental results validate the simulation results.
机译:真空断路器(VCB)中传统永磁致动器(PMA)的一个缺点是难以提高速度特性,因此会限制VCB的中断能力。本文的目的是提出一种控制PMA以增强速度特性的方法。与在打开或关闭操作中仅采用一个线圈的传统控制方法相比,新方法同时在PMA中采用两个线圈,并控制线圈中电流的方向。然后根据新方法构建了一个包含耦合物理场的仿真模型。此外,仿真结果表明,在打开操作中可以提高初始速度,在关闭操作中可以优化速度特性。另外,可以减小工作电流,从而易于控制。最后,实验结果验证了仿真结果。

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