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Analysis, Design, and Comparison of V2V Chargers for Flexible Grid Integration

机译:V2V充电器对灵活网格集成的分析,设计和比较

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摘要

This study proposes a flexible, compact, efficient, and cost effective electric vehicle-to-electric vehicle charge sharing solution that will lead to faster and wider customer adoption of electric vehicles (EVs) as an alternative to current grid-to-vehicle charging methodologies. The energy will be transferred between EVs using a bidirectional dc-dc converter in a conductive way, which can take place at parking lots of workplaces, campuses, or residential premises and highways. The proposed design provides compact infrastructure, wide input and output voltage ranges with bidirectional buck-boost operation, and fast power transfer compared to Level 2 charging stations. A complete design comparison between Si and SiC based converters has been carried out based on the available power modules and magnetic cores. The comparison demonstrates the effect of switching frequency and switch selection on the size of passive components, the converter efficiency, and the power density of the converter. The developed study evaluated three different bidirectional dc-dc converter topologies and validated the developed prototype with experimental results.
机译:本研究提出了一种灵活,紧凑,高效,具有成本效益的电动车辆电荷共享分配解决方案,将导致电动车辆(EVS)更广泛,更广泛地将电动车(EVS)作为电流电网到车辆充电方法的替代方案。能量将在EVS之间使用双向DC-DC转换器以导电方式转移,这可以在停车场,校园或住宅场所和高速公路上进行。该设计提供了紧凑的基础设施,宽输入和输出电压范围,具有双向降压 - 升压操作,与2级充电站相比,快速的电力传输。基于可用电源模块和磁芯,已经进行了SI和SIC基转换器之间的完整设计比较。比较演示了开关频率和开关选择对转换器的尺寸,转换器效率和功率密度的影响。开发的研究评估了三种不同的双向DC-DC转换器拓扑,并通过实验结果验证了开发的原型。

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