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Economic study on bus fast charging station with battery energy storage system

机译:带电池储能系统的公交快速充电站的经济性研究

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Bus fast charging station (FCS) charging power is large, the load short-term peak power and charging costs is large. Configuring the battery energy storage system (BESS) in the FCS can reduce the load peak and the distribution capacity, and can also use the Time-of-Use (TOU) electricity prices to reduce the charging costs. But the storage capacity demand is too large if configure the BESS directly, economy is not ideal. In fact, the plug-in electric bus driving behavior is regular, it can improve the load characteristics by adjusting the bus's charging strategy, and then consider the configuration of BESS. In this paper, first, the load model of the bus FCS was established. Taking a plug-in electric bus station in Beijing as an example, the charging load of the station was simulated and analyzed using two charging strategies. Then, take maximize the net income of the bus FCS system as the objective, the economic model of the FCS with the BESS is established. The economy of the bus FCS system was simulated and analyzed without and with the BESS under two charging strategies. Finally, the results demonstrate that configure BESS in the bus FCS can improve the station system economy.
机译:公交快速充电站(FCS)的充电功率较大,负载的短期峰值功率和充电成本较大。在FCS中配置电池储能系统(BESS)可以减少负载峰值和配电容量,还可以使用分时(TOU)电价来降低充电成本。但是如果直接配置BESS的存储容量需求太大,经济性就不理想。实际上,插电式电动公交车的驾驶行为是有规律的,它可以通过调整公交车的充电策略来改善负载特性,然后考虑BESS的配置。本文首先建立了公交FCS的负荷模型。以北京某插电式公交车站为例,采用两种充电策略对车站的充电负荷进行了仿真和分析。然后,以最大化公交FCS系统的净收入为目标,建立了带有BESS的FCS的经济模型。在两种充电策略下,在不使用BESS和使用BESS的情况下,对公交FCS系统的经济性进行了仿真和分析。最后,结果表明,在总线FCS中配置BESS可以提高站点系统的经济性。

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