电动汽车ipmms非受控发电参数相关性分析

Tianhao Wu, Wei Li, Yihua Hu, Chao Gong, Colin Sokol Kuka, Jiadong Lu
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引用次数: 0

摘要

内嵌式永磁同步电机为提高运行速度,在电动汽车中经常处于磁链弱化状态。但在此过程中可能会出现不可避免的故障,此时功率晶体管立即关闭,电池组通过由六个飞轮二极管组成的三相非控制整流器充电。这也被称为不受控制的发电(UCG)操作,需要很好地理解,以避免损坏逆变器或电池。为了获得更准确的分析结果,本文提出了一种改进的UCG分析驱动系统稳态模型。在模型的基础上,详细分析了参数依赖关系。实验结果验证了UCG的电压和电流特性以及所建稳态模型的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parameter Dependency Analysis of Uncontrolled Generation for IPMSMs in Electric Vehicles
Interior permanent magnet synchronous machines (IPMSM) often work under flux weakening state in electrical vehicles for higher speed. But unavoidable faults might occur during that process, after which the power transistors are switched off immediately and the battery packs are charged through the three-phase uncontrolled rectifier composed of six flywheel diodes. That is also renowned as uncontrolled generation (UCG) operation which needs to be well understood to avoid damage to either inverter or battery. In order to achieve more accurate analytical results, this paper proposes an improved steady-state model of the drive system for UCG analysis. On the basis of the model, the parameter dependencies are detailed. The voltage and current characteristics of UCG and the effectiveness of the proposed steady-state model are verified by experimental results.
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