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Research on Configuration Methods of Battery Energy Storage System for Pure Electric Bus Fast Charging Station

机译:纯电动总线快速充电站电池储能系统配置方法研究

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摘要

With the pervasiveness of electric vehicles and an increased demand for fast charging, stationary high-power fast-charging is becoming more widespread, especially for the purpose of serving pure electric buses (PEBs) with large-capacity onboard batteries. This has resulted in a huge distribution capacity demand. However, the distribution capacity is limited, and in some urban areas the cost of expanding the electric network capacity is very high. In this paper, three battery energy storage system (BESS) integration methods—the AC bus, each charging pile, or DC bus—are considered for the suppression of the distribution capacity demand according to the proposed charging topologies of a PEB fast-charging station. On the basis of linear programming theory, an evaluation model was established that consider the influencing factors of the configuration: basic electricity fee, electricity cost, cost of the energy storage system, costs of transformer and converter equipment, and electric energy loss. Then, a case simulation is presented using realistic operation data, and an economic comparison of the three configurations is provided. An analysis of the impacts of each influence factor in the case study is discussed to verify the case results. The numerical results indicate that the appropriate BESS configuration can significantly reduce the distribution demand and stationary cost synchronously.
机译:随着电动汽车的普及和对快速充电需求的增加,固定大功率的快速充电变得更加普遍,特别是为了提供大容量车载电池的纯电动公共汽车(PEB)的目的。这导致了巨大的分布能力需求。然而,分销能力有限,在一些城市地区,扩大电网容量的成本非常高。在本文中,三种电池储能系统(BESS)集成方法 - AC总线,每个充电桩或直流总线 - 根据PEB快速充电站的提出的充电拓扑抑制了分布容量需求。在线性规划理论的基础上,建立了一种评价模型,考虑了配置的影响因素:基本电费,电力成本,储能系统的成本,变压器和转换器设备的成本以及电能损失。然后,使用现实操作数据呈现案例仿真,提供了三种配置的经济比较。讨论了对案例研究中每个影响因素的影响的分析以验证案例结果。数值结果表明,适当的僵化配置可以显着降低分布需求和同步静止成本。

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