一种用于车载太阳能发电的燃料电池增程车的多端口双向转换器

Pengfei Zheng, J. Bauman
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引用次数: 0

摘要

尽管电动汽车具有零排放和夜间充电方便的优点,但其他问题仍然存在,例如行驶里程有限,行驶中加油缓慢,锂供应问题以及某些发电来源(例如煤)的排放问题。燃料电池驱动的汽车解决了加油时间的问题,如果氢燃料站可用,这也将缓解对里程的担忧。此外,车载太阳能发电可以取代一部分车辆的电网充电需求,并延长行驶里程。对于这两种选择,都可以使用更小的电池,这意味着需要更少的锂。然而,这种太阳能燃料电池增程车(S-FCREV)的电力电子结构将是复杂和昂贵的,使用传统的独立转换器。因此,本文提出了第一个实用的多端口转换器,可以执行所有S-FCREV要求,包括部分电气隔离,与非集成转换器设计相比,元件数量减少。详细的仿真结果验证了所提拓扑的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Multiport Bidirectional Converter for Fuel Cell Range Extended Vehicles with On-board Solar Generation
Although electric vehicles have the advantages of zero emissions and convenient overnight charging, other problems remain such as limited driving ranges, slow refueling while on-the-go, lithium supply issues, and emissions from some sources of electricity generation (e.g., coal). Fuel cell powered vehicles address the refueling time issue, which will also ease range concerns if hydrogen fueling stations are available. Furthermore, on-board solar generation can replace a portion of the vehicle's grid charging needs and extend driving range. For both options, a smaller battery could be used, meaning less lithium is required. However, the power electronic architecture for such a solar fuel cell range extended vehicle (S-FCREV) would be complex and costly with conventional separate converters. Thus, this paper proposes the first practical multi-port converter that can perform all S-FCREV requirements, including partial electrical isolation, with a reduced component count compared to a non-integrated converter design. Detailed simulation results are provided to validate the operation of the proposed topology.
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