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Co-simulation on the optimization design of high-speed electromagnetic repulsion mechanism of vacuum circuit breaker

机译:真空断路器高速电磁排斥机构优化设计的联合仿真

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In recent years high-speed electromagnetic repulsion mechanism (ERM), which is produced based on the eddy-current effect, has been widely applied to vacuum circuit breakers. One of the challenges for the design of ERM is to improve the speed of ERM by optimization design. In this paper, a novel co-simulation model is proposed. The related electromagnetic field, mechanical field and structural field of ERM have been analyzed through co-simulation. Results show that achieving separation in a few milliseconds is possible. Besides, considering the metal plate, as a driver of frequent operation, is possible to reach its mechanic limit, the stress and the strain of it are analyzed. In addition, according to the parametric analysis, the relationship between improving speed and optimizing parameters, e.g., the turns of the coil, the structural size, the storing form of energy and the initial gap are investigated.
机译:近年来,基于涡电流效应产生的高速电磁排斥机构(ERM)已广泛应用于真空断路器。 ERM设计的挑战之一是通过优化设计来提高ERM的速度。本文提出了一种新颖的协同仿真模型。通过协同仿真分析了ERM的相关电磁场,机械场和结构场。结果表明,在几毫秒内实现分离是可能的。此外,考虑到金属板作为频繁操作的驱动器,有可能达到其机械极限,并分析其应力和应变。另外,根据参数分析,研究了提高速度和优化参数(例如,线圈的匝数,结构尺寸,能量的存储形式和初始间隙)之间的关系。

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