Stochastic impact assessment of PHEV charger levels in a microgrid

Anushree Singh, A. Maulik, D. Das
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引用次数: 6

Abstract

In this paper, we have investigated the impact of different plug-in hybrid electric vehicle (PHEV) charger topologies on the fuel cost, network loss, and loss allocation of a gridconnected AC microgrid. The presence of distributed generation, both renewable and non-renewable resources, has been considered in the problem formulation. Uncertainties related to PHEV load, electrical load, renewable generation, and grid power price have been modeled using “Hong’s 2m point estimate method”. The dispatchable units and the battery energy storage system are optimally scheduled to minimize the cost of operation. The network loss is allocated to different nodes using an exact loss allocation approach. Impacts of three charger types, namely-level 1, level 2, and level 3 on the system operating cost, loss, and loss allocation are investigated. Simulation results for a thirty-three node system are also presented.
微电网插电式混合动力充电水平的随机影响评估
本文研究了不同插电式混合动力汽车(PHEV)充电器拓扑对并网交流微电网燃料成本、网络损耗和损耗分配的影响。在问题的表述中考虑了分布式发电的存在,包括可再生资源和不可再生资源。采用“Hong’s 2m点估计法”对插电式混合动力负荷、电力负荷、可再生能源发电和电网电价的不确定性进行建模。对可调度单元和蓄电池储能系统进行优化调度,使运行成本最小化。使用精确的损失分配方法将网络损失分配给不同的节点。研究了1级、2级和3级充电器对系统运行成本、损耗和损耗分摊的影响。给出了一个33节点系统的仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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