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Assessing the impact of Plug-in Hybrid Electric Vehicles on distribution network operations using Time-Series Distribution Power Flow analysis

机译:使用时间序列配电潮流分析评估插电式混合动力汽车对配电网络运行的影响

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Plug-in Hybrid Electric Vehicles (PGEVs) are fast becoming an effective alternative to the fossil-fuel based vehicles and its penetration in the consumer market is poised to increase at a faster rate in the coming decades. However, the uncontrolled charging-discharging of PHEVs — given its increasing use — will pose a formidable challenge to the Distribution System Operators (DSOs). It can both be seen as an opportunity in terms of dispatchable energy storage as well as a threat in the form of uncontrolled factor raising the maximum real power demand. DSOs' other concerns may include the impact of PHEVs on overall feeder voltage profile, energy losses, power factor-reactive power management and switching operations of Voltage Regulators (VRs), transformers with Line Tap Changers (LTCs) and Shunt Capacitors (SCs). In order to account for seasonal and diurnal variability and to undertake time-integral studies for losses and switching operations of controllable devices, Time-Series Distribution Power Flow (TS-DPF) analysis is used in this paper for IEEE37 node underground cable-fed network to assess the impact of PHEVs. The results show the realistic annualized effect of PHEVs on voltage profile, energy losses, peak demand at source node and tap changing operations of VRs in a low voltage distribution network.
机译:插电式混合动力汽车(PGEV)迅速成为基于化石燃料的汽车的有效替代品,并且其在消费市场的渗透率有望在未来几十年内以更快的速度增长。但是,由于PHEV的使用越来越多,无节制的充放电将给配电系统运营商(DSO)带来巨大的挑战。就可调度的能量存储而言,这既可以看作是机遇,也可以看作是不受控制的因素所带来的威胁,提高了最大有功功率。 DSO的其他问题可能包括PHEV对馈线总体电压分布,能量损耗,功率因数无功功率管理和稳压器(VR),带分接开关(LTC)和并联电容器(SC)的开关操作的影响。为了考虑季节性和昼夜的变化并进行可控设备的损耗和开关操作的时间积分研究,本文对IEEE37节点地下电缆馈电网络使用了时间序列分布潮流(TS-DPF)分析评估插电式混合动力汽车的影响。结果表明,PHEV在低压配电网中对电压曲线,能量损耗,源节点的峰值需求以及VR的抽头变换操作具有现实的年度影响。

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