Voltage profile and THD distortion of residential network with high penetration of Plug-in Electrical Vehicles

S. Deilami, A. S. Masoum, P. Moses, M. Masoum
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引用次数: 78

Abstract

This paper analyzes the potential impacts of Plug-in Electric Vehicles (PEVs) on the voltage profile, losses, power quality and daily load curve of low voltage residential network. PEVs are soon expected to grow in popularity as a low emission mode of transport compared to conventional petroleum based vehicles. Utilities are concerned about the potential detrimental impacts that multiple domestic PEV charging may have on network equipment (e.g., transformer and cable stresses). To address these issues, two charging regimes including uncoordinated (random) and coordinated (uniformly distribution) are considered. Based on harmonic analysis of a typical 19 bus low voltage (415V) residential network, different charging scenarios over a 24 hour period are compared considering voltage deviations, system losses, transformer overloading and harmonic distortions. Simulation results are used to highlight the advantages of the coordinated uniformly distributed charging of PEV in residential systems.
插电式电动汽车高普及率住宅电网电压分布及THD畸变
分析了插电式电动汽车对低压居民电网电压分布、损耗、电能质量和日负荷曲线的潜在影响。与传统的以石油为基础的车辆相比,pev作为一种低排放的交通方式,预计很快就会越来越受欢迎。公用事业公司担心多个家用电动汽车充电可能对网络设备产生潜在的有害影响(例如变压器和电缆应力)。为了解决这些问题,考虑了非协调(随机)和协调(均匀分布)两种收费制度。通过对典型19母线415V住宅电网的谐波分析,比较了24小时内不同充电场景下的电压偏差、系统损耗、变压器过载和谐波畸变。仿真结果说明了电动汽车在住宅系统中协调均匀分布充电的优越性。
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