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Design Consideration and Evaluation of a 12/8 High-Torque Modular-Stator Hybrid Excitation Switched Reluctance Machine for EV Applications

机译:电动汽车用12/8高转矩模数混合激励开关磁阻电机的设计考虑和评估

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摘要

This paper presents a 12/8-pole, three-phase, modular-stator hybrid excitation switched reluctance machine (MSHSRM) assisted with permanent magnets (PMs) as well as its design consideration and performance evaluation. The basic operating principle is illustrated through a specific form of this machine, and the magnetic equivalent circuit model is built and analyzed. Then, the main parameters of the machine are optimized by the finite-element method. The static magnetic characteristics and dynamic performance of this novel machine are simulated and compared with other two SRMs, one is segmented 12/8 SRM without PM, and the other is the conventional 12/8 SRM with unsegmented structure. Finally, two motor prototypes, including one MSHSRM and one conventional SRM of the same size are manufactured. The static magnetic characteristic and dynamic operation of two motor drives are measured to confirm the predictions. The simulation and experimental results indicate that this MSHSRM has higher power and stronger load capacities than the conventional SRM in whole speed range with higher torque/power density and higher torque per ampere.
机译:本文介绍了一种具有永磁体(PM)辅助的12/8极三相模块化定子混合混合励磁开关磁阻电机(MSHSRM)以及其设计考虑和性能评估。通过该机器的特定形式来说明基本工作原理,并建立和分析磁等效电路模型。然后,通过有限元方法对机器的主要参数进行优化。模拟了该新型机器的静磁特性和动态性能,并将其与其他两个SRM进行了比较,一个是分段的12/8 SRM,不带PM,另一个是传统的12/8 SRM,无分段。最后,制造了两个电机原型,包括一个MSHSRM和一个相同尺寸的常规SRM。测量两个电动机驱动器的静磁特性和动态运行以确认预测结果。仿真和实验结果表明,该MSHSRM在整个速度范围内具有比传统SRM更高的功率和更强的负载能力,并且具有更高的转矩/功率密度和更高的每安培转矩。

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