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Optimization design of planar switched reluctance motors based on electromagnetic force characteristics

机译:基于电磁力特性的平面开关磁阻电机的优化设计

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A new type of planar switched reluctance motor (PSRM) is proposed based on the switched reluctance principle. The configuration, principle, and mathematical model of the PSRM are clarified. According to the special structure form the complex magnetic circuit characteristic of the PSRM, 3D transient electromagnetic model of the PSRM is built based on ANSOFT Maxwell/3D. Based on the built model, the electromagnetic distributions and electromagnetic force characteristics of the PSRM are analyzed. In addition, the air gap and translator yoke of the PSRM are analyzed. Simulation results show that the length of the air gap and the thickness of the translator yoke are very important parameters for influencing the performance of the PSRM. The parameters of the optimal structure of the PSRM are revised via the simulation. A prototype of the PSRM is manufactured according to the optimization results, and experiments are performed. The design method is validated by the analysis of the experimental results. The theoretical foundation of the structure design and the development of the PSRM are provided. The PSRM is expected to be utilized in the application of high precision processing.
机译:基于开关磁阻原理,提出了一种新型的平面开关磁阻电动机(PSRM)。阐明了PSRM的配置,原理和数学模型。根据PSRM复杂磁路特性的特殊结构,在ANSOFT Maxwell / 3D的基础上建立了PSRM的3D瞬变电磁模型。基于建立的模型,分析了PSRM的电磁分布和电磁力特性。此外,还分析了PSRM的气隙和平移磁轭。仿真结果表明,气隙的长度和平移磁轭的厚度是影响PSRM性能的重要参数。通过仿真修改了PSRM最佳结构的参数。根据优化结果制造了PSRM的原型,并进行了实验。通过对实验结果的分析验证了该设计方法。提供了结构设计的理论基础和PSRM的发展。 PSRM有望用于高精度处理的应用中。

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