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Analysis and Development of Novel Three-Phase Hybrid Magnetic Paths Switched Reluctance Motors Using Modular and Segmental Structures for EV Applications

机译:电动汽车用模块化和分段结构的新型三相混合磁路开关磁阻电动机的分析与开发

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摘要

The classical switched reluctance motors (SRMs) often suffer from drawbacks such as low power and torque densities, high torque ripple, mutual coupling, etc., which limit their industrial applications. This paper presents the analysis and development of two novel three-phase SRMs with hybrid magnetic paths comprising six E-shaped modular stators and three segmental common rotors, termed as the modular SRMs (MSRMs), for electric vehicle applications. The machine topologies with different winding arrangements are described. The voltage and output power equations are analytically derived, and some design particularities and parameters are discussed. The field distributions and static magnetic characteristics of an MSRM with double coil are analyzed by using 3-D finite-element method. After that, two MSRMs with different winding arrangements, namely a double-coil MSRM and single-coil MSRM, are analyzed and compared to evaluate the distinct features of this novel MSRM, accompanied with a classical three-phase 6/4 SRM. The comparison includes static magnetic characteristics, mass of iron core, normal dynamic, and fault-tolerant performances. It is shown that the double-coil MSRM appears to have better characteristics such as higher torque production capability, lower torque ripple and cost, higher torque and output power densities, and higher reliability and fault tolerance. For experimental verification, laboratory testing of a double-coil MSRM is developed, and the simulated and measured static inductance characteristics and dynamic performances correlate well.
机译:传统的开关磁阻电动机(SRM)经常遭受诸如功率和转矩密度低,转矩波动大,相互耦合等缺点,这限制了它们的工业应用。本文介绍了两种新颖的具有混合磁路的三相SRM的分析和开发,包括六个E形模块化定子和三个分段式通用转子,称为模块化SRM(MSRM),用于电动汽车应用。描述了具有不同绕组布置的电机拓扑。通过分析得出电压和输出功率方程,并讨论了一些设计特殊性和参数。采用3-D有限元方法对双线圈MSRM的磁场分布和静磁特性进行了分析。此后,分析并比较了具有不同绕组布置的两个MSRM,即双线圈MSRM和单线圈MSRM,以评估此新型MSRM与经典的三相6/4 SRM的区别。比较包括静态磁特性,铁芯质量,正常动态和容错性能。结果表明,双线圈MSRM具有更好的特性,例如更高的扭矩产生能力,更低的扭矩波动和成本,更高的扭矩和输出功率密度以及更高的可靠性和容错能力。为了进行实验验证,开发了双线圈MSRM的实验室测试,并且仿真和测量的静态电感特性与动态性能具有良好的相关性。

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