永磁辅助同步磁阻电机高速运行的每安培最大转矩和弱磁场控制

S. Sriprang, B. Nahid-Mobarakeh, N. Takorabet, S. Pierfederici, P. Mungporn, P. Thounthong, N. Bizon, P. Kuman, Z. Shah
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引用次数: 2

摘要

永磁辅助同步电机(PMA-SynRM)由于具有高转矩性能和功率因数,以及高速弱磁区运行,是下一代电动汽车(ev)和混合动力汽车(hev)的理想选择。本文提出的PMA-SynRM的最大转矩每安培(MTPA)控制方案可以最大限度地减少系统的铜损耗,并利用弱磁场控制方案。设计并制造了一个小型的“1kw原型PMA-SynRM”,以在实验室中测试和检查拟议的控制。采用MicroLab Box dSPACE对该算法进行了数字仿真。基于仿真和实验结果,确定了所提控制方案的性能。
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Maximum Torque per Ampere and Field-weakening Controls for the High-Speed Operation of Permanent-Magnet Assisted Synchronous Reluctance Motors
Because of the high-torque's capability and power factor as well as high-speed flux-weakening region operation, the permanent-magnet assisted synchronous motor (PMA-SynRM) is a right candidate for the next generations of electric vehicles (EVs) and hybrid electric vehicles (HEVs). The maximum torque per ampere (MTPA) control scheme of the PMA-SynRM presented in this paper can be used to minimize the copper losses of the system and utilize the field-weakening control scheme. A small-scale “1 kW prototype PMA-SynRM” was designed and manufactured to test and examine the proposed control in the laboratory. The proposed algorithm was digitally carried out using the MicroLab Box dSPACE. Based on the simulation and experimental results, the performance of the proposed control scheme was determined.
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