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A Modified LCC-Compensated Pickup Topology for Dynamic Wireless Power Transfer Systems

机译:用于动态无线功率传输系统的修改后的LCC补偿拾取拓扑

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This paper proposes an unconventional pickup topology employed in the dynamic battery charging of electric vehicles. The pickup reactive power compensation is performed through a modified LCC network that permits the continuous conduction mode operation of the rectifier for a wide range of working conditions. The dc/dc converter that controls the battery charging process requires a small value of dc inductance for the proper operation. The proposed control strategy for the switch in the dc/dc conversion stage maintains the pickup input power factor close to one for large variations of the charging power. In this paper, at first the operation of the proposed topology and its related control strategy are introduced and then a design procedure for the modified LCC network parameters is presented. The pickup topology is implemented in PSIM and the outcomes of the simulations corroborate the analytical analysis.
机译:本文提出了一种用于电动汽车动态电池充电的非常规拾音器拓扑。拾取器无功功率补偿是通过修改后的LCC网络执行的,该网络允许在各种工作条件下使整流器连续导通模式运行。控制电池充电过程的DC / DC转换器需要较小的DC电感才能正常工作。对于DC / DC转换级中的开关,建议的控制策略将使拾取器输入功率因数保持接近于1,以应对较大的充电功率变化。本文首先介绍了所提出的拓扑结构的操作及其相关的控制策略,然后提出了修改后的LCC网络参数的设计程序。拾取拓扑在PSIM中实现,仿真结果证实了分析分析。

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