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Battery, Ultracapacitor, Fuel Cell, and Hybrid Energy Storage Systems for Electric, Hybrid Electric, Fuel Cell, and Plug-In Hybrid Electric Vehicles: State of the Art

机译:电动,混合动力,燃料电池和插电式混合动力汽车的电池,超级电容器,燃料电池和混合能源存储系统:最新技术

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摘要

The fuel economy and all-electric range (AER) of hybrid electric vehicles (HEVs) are highly dependent on the onboard energy-storage system (ESS) of the vehicle. Energy-storage devices charge during low power demands and discharge during high power demands, acting as catalysts to provide energy boost. Batteries are the primary energy-storage devices in ground vehicles. Increasing the AER of vehicles by 15% almost doubles the incremental cost of the ESS. This is due to the fact that the ESS of HEVs requires higher peak power while preserving high energy density. Ultracapacitors (UCs) are the options with higher power densities in comparison with batteries. A hybrid ESS composed of batteries, UCs, and/or fuel cells (FCs) could be a more appropriate option for advanced hybrid vehicular ESSs. This paper presents state-of-the-art energy-storage topologies for HEVs and plug-in HEVs (PHEVs). Battery, UC, and FC technologies are discussed and compared in this paper. In addition, various hybrid ESSs that combine two or more storage devices are addressed.
机译:混合动力汽车(HEV)的燃油经济性和全电动范围(AER)高度依赖于汽车的车载储能系统(ESS)。能量存储设备在低功率需求期间充电,而在高功率需求期间放电,充当提供能量提升的催化剂。电池是地面车辆的主要储能设备。将车辆的AER增加15%,几乎使ESS的增量成本增加了一倍。这是由于这样的事实,即混合动力汽车的ESS在保持高能量密度的同时需要更高的峰值功率。与电池相比,超级电容器(UCs)具有更高的功率密度。由电池,UC和/或燃料电池(FC)组成的混合动力ESS对于高级混合动力汽车ESS可能是更合适的选择。本文介绍了混合动力汽车和插电式混合动力汽车(PHEV)的最新能源存储拓扑。本文讨论并比较了电池,UC和FC技术。另外,解决了组合两个或更多存储设备的各种混合ESS。

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