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Two alternative robust optimization models for flexible power management of electric vehicles in distribution networks

机译:用于配电网络中电动汽车的灵活电源管理的两个备选鲁棒优化模型

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This paper presents a robust optimization problem of the flexible bidirectional power management of a smart distribution network and harmonic compensation of nonlinear loads using electric vehicles (EVs) equipped with bidirectional chargers. The base deterministic model of the proposed problem is as mixed-integer nonlinear programming (MINLP), having the objective function to minimize the economic and technical indices subject to harmonic load flow equations, EVs constraints, system operation and harmonic indices limits. This model is converted to a mixed-integer linear programming (MILP) model in the next step. In the proposed MILP model, the active, reactive and apparent loads, electrical energy, reactive power and harmonic current prices, as well as EVs characteristics, are considered uncertain parameters. Accordingly, two alternative robust optimization approaches have been implemented for the conditions of having both the probability distribution function or the bounded uncertainty in the proposed MILP problem model. The proposed model is tested on distribution networks to demonstrate its efficiency and performance. The results show that the MINLP model can be substituted by the proposed high-speed MILP model. In addition, the capacity of the injecting power of EVs is reduced in the worst case scenario with respect to the scenario that is used in the deterministic model, while the consumed power of loads and EVs and energy price increases in this scenario. Finally, the payment of EV owners is reduced by considering EVs power and harmonic control. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一个鲁棒的优化问题,即智能配电网的灵活双向电源管理和使用配备双向充电器的电动汽车(EV)对非线性负载进行谐波补偿。所提出问题的基本确定性模型为混合整数非线性规划(MINLP),其目标函数是在受谐波潮流方程,EV约束,系统运行和谐波指标限制的情况下,将经济和技术指标降至最低。下一步,该模型将转换为混合整数线性规划(MILP)模型。在提出的MILP模型中,有功,无功和视在负载,电能,无功功率和谐波电流价格以及EVs特性被视为不确定参数。因此,在提出的MILP问题模型中具有概率分布函数或有界不确定性的条件下,已经实现了两种替代的鲁棒优化方法。该模型在配电网络上进行了测试,以证明其效率和性能。结果表明,MINLP模型可以被所提出的高速MILP模型代替。另外,相对于确定性模型中使用的方案,在最坏情况下,EV的注入功率的容量会降低,而在此方案中,负载和EV的消耗功率以及能源价格会增加。最后,通过考虑电动汽车的功率和谐波控制来减少电动汽车所有者的报酬。 (C)2017 Elsevier Ltd.保留所有权利。

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