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Analyzing Power Quality Implications of High Level Charging Rates of Electric Vehicle Within Distribution Networks

机译:分析电动汽车在配电网中高级充电率的电能质量影响

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This paper investigates the impact of the charging level of high penetration level of Electric Vehicles (EVs) on the power quality of the electricity distribution network. The EV owners tend to charge their EVs as fast as possible. The charging levels of EVs within the distribution network affect the voltage profile of buses of the network. In this paper, an exact Second-Order Cone Programming (SOCP) formulation of the full AC optimal power flow (ACOPF) problem of the distribution network is presented. The network includes solar generation units and EVs as Distributed Energy Resources (DERs). Different charging levels are considered to analyze the impact of EVs on the distribution network. The performance of the proposed model is illustrated for the modified IEEE-33 bus system for different charging levels for EVs. Besides, the impact of available solar power and battery degradation cost of EVs on the distribution network is investigated. It is illustrated that how EV charging will cause voltage deviation challenges for the distribution network.
机译:本文调查了电动车辆(EVS)高穿透水平对电力分配网络电能质量的影响。 EV业主倾向于尽可能快地向EVS充电。分发网络内的EV的充电水平影响网络的总线的电压分布。本文提出了一种精确的二阶锥形编程(SOCP)配方的分配网络的全AC最佳功率流(ACOPF)问题。该网络包括太阳能发电单元和EVS作为分布式能源资源(DERS)。考虑不同的充电水平来分析EVS对分销网络的影响。示出了所提出的模型的性能,用于改进的IEE-33总线系统,用于EVS的不同充电水平。此外,研究了可用的太阳能和电池降低在分配网络上的电池降低成本的影响。说明EV充电将对分销网络引起电压偏差挑战。

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