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Effects of large scale EV and PV integration on power supply systems in the context of Singapore

机译:新加坡背景下大规模电动汽车和光伏发电一体化对供电系统的影响

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Electric vehicles (EVs) are a key technology to reduce dependency on oil imports as well as to diminish environmental effects of individual transportation. Especially in megacities like Singapore where travel distances are moderate, this new mode of transportation is often discussed as a future option. This paper investigates possible effects of large scale EV integration on the power supply system. A unit commitment model combined with an integrated approach for smart charging is used. The mixed-integer linear programming (MILP) formulated unit commitment algorithm cooptimizes energy, regulation, and spinning reserve power. The effects of different charging strategies on the power plant scheduling are analyzed. The power system infrastructure is kept at status quo in a baseline scenario and extended to future scenarios with intermittent photovoltaics (PV) power. Effects on power plants scheduling are evaluated by measuring resulting variable cost of electricity as well as CO2-emissions. Moreover, effects of EVs providing regulation and spinning reserve by controllable charging are investigated.
机译:电动汽车(EV)是减少对石油进口的依赖以及减少个人运输对环境的影响的关键技术。特别是在新加坡等大城市,那里的出行距离适中,这种新的交通方式通常被认为是未来的选择。本文研究了大规模电动汽车集成对电源系统的可能影响。使用单元承诺模型和集成方法进行智能充电。混合整数线性规划(MILP)制定的单元承诺算法可共同优化能量,调节和旋转备用功率。分析了不同充电策略对电厂调度的影响。电力系统基础设施在基线情况下保持现状,并使用间歇性光伏(PV)电源扩展到将来的情况。通过测量产生的可变电力成本以及CO 2 排放来评估对电厂调度的影响。此外,研究了电动汽车通过可控充电提供调节和旋转储备的效果。

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