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DC link capacitors for traction SRM drives in high temperature automotive environments: A review of current issues and solutions

机译:用于牵引SRM驱动的DC链路电容器在高温汽车环境中:对当前问题和解决方案进行审查

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Recent years have seen an increase in research into switched reluctance machines for automotive traction applications, driven by the cost and scarcity of permanent magnet materials. Such machines increase the demands on the DC link capacitor, which must maintain high reliability and long life while storing large amounts of charge at high voltages. The aim of this paper is to provide an overview of this field at the present time, which is currently lacking in the literature, and provide impetus for future research. The limitations of current technology are identified, both in terms of dielectric materials, control and circuit topology. Current dielectrics and their suitability for this application are assessed and compared. Then methods are illustrated which could reduce the requirements of the DC link capacitor from the perspective of control and circuit topology, which benefit the system design in cost, weight and efficiency.
机译:近年来,通过永久磁铁材料的成本和稀缺驱动,对汽车牵引应用的开关磁阻机的研究有所增加。这种机器增加了直流链路电容器上的需求,必须保持高可靠性和长寿命,同时在高电压下存储大量电荷。本文的目的是目前缺乏该领域的概述,该领域目前缺乏文献,并为未来的研究提供动力。在介电材料,控制和电路拓扑方面识别了当前技术的局限性。评估和比较电流电介质及其对该应用的适用性。然后说明了方法,这可以从控制和电路拓扑的角度降低DC链路电容的要求,这有利于成本,重量和效率的系统设计。

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