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An optimization model of EVs charging and discharging for power system demand leveling

机译:电力需求均衡的电动汽车充放电优化模型

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This paper provides an advanced methodology for optimizing the UK load with various uncertainties which is related with individual driving behaviour. Without the optimized regulation for traditional power system demand, integrating increasing number of electric vehicles (EVs) would have an adverse impact on stability of power systems. Hence, when there are large-scale EVs being plugged into power grid, it is significant to employ this advanced optimization model. In addition, the flexible bidirectional charging and discharging would improve flexibility and stability, compared with the optimized methodology only for EV charging. Three scenarios with different charging and discharging power levels and various penetration levels of EV are discussed in this paper. Simulation results demonstrate that bidirectional EV charging has effective potential to improve the load demand profile, with the increase of EV penetration proportion, and power levels of charging and discharging.
机译:本文提供了一种先进的方法,可以优化具有各种不确定性的英国负荷,这些不确定性与个人驾驶行为有关。如果没有针对传统电力系统需求的优化法规,则集成越来越多的电动汽车(EV)将对电力系统的稳定性产生不利影响。因此,当有大型电动汽车插入电网时,采用这种先进的优化模型非常重要。此外,与仅用于EV充电的优化方法相比,灵活的双向充电和放电将提高灵活性和稳定性。本文讨论了三种具有不同充电和放电功率级别以及各种EV渗透级别的场景。仿真结果表明,双向电动汽车充电具有有效的潜力,可以随着电动汽车普及率的提高以及充电和放电功率水平的提高而改善负荷需求曲线。

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