一种用于电动汽车的双输入三输出DC-DC变换器的性能分析与硬件实现

Tuhinanshu Mishra, Ravindra K. Singh
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引用次数: 0

摘要

电动汽车减少了车内污染物的排放,但由于电网充电电池依赖于化石燃料的消耗,因此在资源消耗方面存在不足。基于可再生能源的车辆进一步消除了这个问题,提供完全无污染的牵引力。本文通过双输入三输出变换器拓扑,对一种由光伏和直流电池混合供电的人力车动力系统进行了评估,并通过仿真研究了该车辆的性能。多输入多输出转换器减少了元件数量和额外损耗,同时提高了空间利用率和封装。硬件实现是为了分析所提出的拓扑结构。这种转换器将大大提高动力系统的效率,同时减少损耗。
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Performance Analysis and Hardware Implementation of A Dual Input Triple Output DC-DC Converter for EV application
Electric vehicles reduce the on-board emission of pollutants but fail in resource consumption since grid-charged batteries rely on fossil fuel consumption. Vehicles based on renewable sources further eliminate this issue delivering completely pollution-free traction. This paper evaluates an erickshaw power train fed by PV and DC battery hybrid through a dual input triple output converter topology and investigates the performance of such vehicle through simulation. A multiinput multi-output converter reduces component count and extra losses while improving space utilization and packaging. Hardware implementation is done to analyze the proposed topology. This converter will extensively improve power train efficiency while reducing losses.
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