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Mathematical modeling of electric vehicles contributions in voltage security of smart distribution networks

机译:电动汽车对智能配电网电压安全的贡献的数学模型

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This paper evaluates the voltage security of the distribution networks in the presence of electric vehicles in the optimization framework. Accordingly, the main objective functions of this optimization problem include maximization of voltage security margin and minimization of operational cost. Also, it is supposed that the electric vehicles are equipped with bidirectional chargers to control active and reactive power in smart distribution networks, simultaneously. The objective functions are subject to the constraints of power flow equations, system operating limits and electric vehicle constraints. The proposed model is implemented on the 33-bus distribution network to evaluate the performance of the proposed optimization scheme for the management of the smart distribution networks in the presence of electric vehicles. The results show that the operational cost and network voltage security margin are reduced in the case of the higher electric vehicle penetration rate when electric vehicles are used for charging active power and reactive power control capability, with respect to the case that does not include electric vehicles.
机译:本文在优化框架中评估了存在电动汽车的情况下配电网的电压安全性。因此,该优化问题的主要目标功能包括电压安全裕度的最大化和运营成本的最小化。另外,假定电动车辆配备有双向充电器以同时控制智能配电网中的有功和无功功率。目标函数受潮流方程,系统运行极限和电动汽车约束的约束。所提出的模型在33总线配电网络上实施,以评估所提出的优化方案在电动汽车存在下用于智能配电网管理的性能。结果表明,与不包括电动汽车的情况相比,当使用电动汽车充电有功功率和无功功率控制能力时,如果电动汽车的普及率较高,则运营成本和网络电压安全裕度会降低。

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