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Load characteristics of electric vehicles in charging and discharging states and impacts on distribution systems

机译:电动汽车充电和放电状态的载荷特性以及对分配系统的影响

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With incentive policies introduced in developed countries and advent of electric vehicle (EV) technologies, especially the development of high energy and power density batteries, the penetration level of EVs is expected to grow rapidly. A high penetration level of EVs could bring about a large impact on power grid, particularly on distribution systems. This paper is to investigate such an impact and countermeasures. The Monte Carlo simulation method is first utilized to study the charging load in the uncoordinated charging mode and the discharging capacity curve in the vehicle-to-grid (V2G) mode. The EVs' impacts in terms of system loads, power losses and voltage deviations are then analyzed in both the uncoordinated charging mode and the V2G mode. The PG&E 69-node distribution system is employed in the case study. Simulation results have shown that uncoordinated charging at a high EV penetration level will cause a negative impact in all the aspects analyzed. By reasonable management of EV charging/discharging, however, the adverse impact could be significantly alleviated to ensure secure and economic operation of the distribution system.
机译:通过发达国家引入的激励政策和电动汽车(EV)技术的出现,特别是高能量和功率密度电池的开发,EVS的渗透水平预计会迅速增长。 EVS的高渗透水平可能对电网产生大的影响,特别是在分配系统上。本文是调查这种影响和对策。首先利用蒙特卡罗模拟方法来研究车辆到网格(V2G)模式中的不协调的充电模式和放电容量曲线中的充电负荷。然后,在不协调的充电模式和V2G模式下分析EVS对系统负载,功率损耗和电压偏差方面的影响。在案例研究中使用PG&E 69节点分配系统。仿真结果表明,在高EV渗透水平下的不协调充电将导致分析所有方面的负面影响。然而,通过合理管理EV充电/放电,可能会显着缓解不利影响,以确保分配系统的安全和经济运行。

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