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Dynamic Characteristics Calculation of Permanent Magnetic Swing Angle Torque Motor Based on Transient Finite Element Method

机译:基于瞬态有限元法的永磁摆角转矩电动机动态特性计算

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The finite element magnetic field numerical calculation method is widely used in motor structure design and performance analysis due to its high calculation accuracy and versatility. The permanent magnet swing angle torque motor is studied in this paper which applied to high voltage circuit breaker. Firstly, the topological structure and equivalent circuit equation of coupling circuit are discussed for the permanent magnet swing angle torque motor during the opening and closing, established the field-path-motion coupling time-step finite element model of motor, analyzed the distribution of magnetic flux, magnetic density and air gap magnetic density at the closing position, maximum load and opening position, and calculated the dynamic parameters of motor. The results show that the permanent magnet swing angle torque motor can meet the operating requirements of circuit breaker. In the magnetic field analysis, the magnetic density of stator yoke is 2.5T, the average air gap magnetic density is 1.0T. In the dynamic parameters simulation, the average opening speed is 656r/min, the opening operation time is 33ms, the closing operation time is 40ms. It can provide a theoretical basis for the further research and development of motor.
机译:有限元磁场数值计算方法具有很高的计算精度和通用性,因此在电机结构设计和性能分析中得到了广泛的应用。本文研究了应用于高压断路器的永磁摆角转矩电动机。首先讨论了永磁摆角转矩电动机在启闭过程中的耦合电路的拓扑结构和等效电路方程,建立了电动机的场-路径-运动耦合时步有限元模型,分析了电磁分布。在关闭位置,最大负载和打开位置的磁通,磁密度和气隙磁密度,并计算出电机的动态参数。结果表明,永磁摆角转矩电动机能够满足断路器的运行要求。在磁场分析中,定子轭的磁密度为2.5T,平均气隙磁密度为1.0T。在动态参数仿真中,平均打开速度为656r / min,打开操作时间为33ms,关闭操作时间为40ms。它可以为电动机的进一步研究和开发提供理论依据。

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