Design Optimization of SynRM Drives for HEV Power Train Applications

A. Arkadan, N. Al-Aawar, A. Hanbali
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引用次数: 9

Abstract

This work investigates the feasibility of utilizing a team artificial intelligence-electromagnetic, TAI-EM, environment for the characterization and design optimization of synchronous reluctance motors, SynRM, with axially laminated anisotropic, ALA, rotor configurations. The main objective of this optimization is to minimize the torque ripple, as well as Ohmic and core losses at a given torque-speed condition. This environment is applied for the characterization and design optimization of a prototype 100 KW, 6000 rev/min ALA rotor SynRM drive system for traction applications. The TAI-EM environment resulted in an optimized machine design. The results are verified by comparing major performance indices of the predicted optimized design to those obtained from the prototype measurements.
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混合动力系统应用中SynRM驱动器的设计优化
本研究探讨了利用团队人工智能电磁(TAI-EM)环境对具有轴向层压各向异性(ALA)转子配置的同步磁阻电机(SynRM)进行表征和设计优化的可行性。这种优化的主要目标是在给定的转矩-速度条件下最小化转矩脉动,以及欧姆和铁芯损耗。该环境用于牵引应用的100 KW, 6000转/分钟ALA转子SynRM驱动系统原型的表征和设计优化。TAI-EM环境导致了优化的机器设计。通过将预测优化设计的主要性能指标与样机测量结果进行比较,验证了预测结果。
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