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首页> 外文期刊>IEEE Transactions on Power Electronics >Modeling, Control, and Seamless Transition of the Bidirectional Battery-Driven Switched Reluctance Motor/Generator Drive Based on Integrated Multiport Power Converter for Electric Vehicle Applications
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Modeling, Control, and Seamless Transition of the Bidirectional Battery-Driven Switched Reluctance Motor/Generator Drive Based on Integrated Multiport Power Converter for Electric Vehicle Applications

机译:基于集成多端口功率转换器的电动汽车双向电池驱动开关磁阻电动机/发电机驱动的建模,控制和无缝过渡

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摘要

This paper proposes a generalized control method for battery-driven switched reluctance motor (SRM) drives based on integrated multiport power converter (IMPC) with small-ripple bidirectional power flow ability in electric vehicles. Large power ripple caused by the current commutation is a challenge issue for SRM drives, which would lower the system efficiency, requires extra heat dissipation in the battery and shortens its lifetime. The detailed model of the SRM drive and IMPC is developed which covers both motoring and generating modes of operation. Based on this model, an advanced multiobjective power flow control method with repetitive controller is proposed to restrain battery current ripple. Because of the unified model, a seamless transition between various modes can also be achieved. Finally, simulation and experimental results demonstrate the feasibility and superior performance of the proposed control method.
机译:本文提出了一种基于电动汽车小波纹双向潮流的集成多端口功率变换器(IMPC)的电池驱动开关磁阻电机(SRM)驱动器的通用控制方法。对于SRM驱动器,由电流换向引起的大功率纹波是一个挑战性问题,这将降低系统效率,需要电池中额外的散热并缩短其使用寿命。开发了SRM驱动器和IMPC的详细模型,其中涵盖了电动和发电操作模式。在此模型的基础上,提出了一种具有重复控制器的先进多目标潮流控制方法,以抑制电池电流纹波。由于具有统一的模型,因此还可以实现各种模式之间的无缝过渡。最后,仿真和实验结果证明了该控制方法的可行性和优越的性能。

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