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A New Battery/UltraCapacitor Hybrid Energy Storage System for Electric, Hybrid, and Plug-In Hybrid Electric Vehicles

机译:适用于电动,混合动力和插电式混合动力汽车的新型电池/超电容器混合储能系统

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摘要

In this paper, a new battery/ultracapacitor hybrid energy storage system (HESS) is proposed for electric drive vehicles including electric, hybrid electric, and plug-in hybrid electric vehicles. Compared to the conventional HESS design, which uses a larger dc/dc converter to interface between the ultracapacitor and the battery/dc link to satisfy the real-time peak power demands, the proposed design uses a much smaller dc/dc converter working as a controlled energy pump to maintain the voltage of the ultracapacitor at a value higher than the battery voltage for the most city driving conditions. The battery will only provide power directly when the ultracapacitor voltage drops below the battery voltage. Therefore, a relatively constant load profile is created for the battery. In addition, the battery is not used to directly harvest energy from the regenerative braking; thus, the battery is isolated from frequent charges, which will increase the life of the battery. Simulation and experimental results are presented to verify the proposed system.
机译:本文提出了一种新的电池/超级电容器混合储能系统(HESS),用于电动汽车,包括电动,混合动力和插电式混合动力汽车。与传统的HESS设计相比,传统的HESS设计使用更大的dc / dc转换器在超级电容器和电池/ dc链路之间进行接口以满足实时峰值功率需求,而本设计则使用了更小巧的dc / dc转换器在大多数城市行驶条件下,可控能量泵将超级电容器的电压维持在高于电池电压的值。仅当超级电容器电压降至电池电压以下时,电池才会直接提供电源。因此,为电池创建了相对恒定的负载曲线。此外,电池不用于直接从再生制动中收集能量;因此,电池与频繁充电隔离,这将增加电池的使用寿命。仿真和实验结果被提出来验证所提出的系统。

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