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Cooperative Dispatch of Wind Generation and Electric Vehicles With Battery Storage Capacity Constraints in SCUC

机译:SCUC中具有电池存储容量约束的风力发电与电动汽车的协同调度

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Load dispatch such as Vehicle-to-Grid (V2G) control of electric vehicles (EVs) is taken as a promising way to promote the integration of wind power. This paper proposes a cooperation model of EVs and wind generation based on the security-constrained unit commitment (SCUC). Different from existing works, it pays special attentions to the model and constraints of EV aggregators. The distribution pattern of user trips is included and the dynamic process of stored energy is analyzed in the model. The constraints that EVs can't charge and discharge simultaneously are proved to be redundant under some conditions on theory and the necessity of battery storage constraints are explained via numerical examples. The proposed model is verified in case studies on the IEEE-RTS. The results show that V2G can not only improve the efficiency of thermal units but also promote the integration of wind power. Factors influencing storage violations are also analyzed.
机译:诸如电动汽车(EV)的车辆到电网(V2G)控制之类的负载分配被视为促进风电集成的一种有前途的方式。本文提出了一种基于安全约束单位承诺(SCUC)的电动汽车与风力发电合作模型。与现有作品不同,它特别关注电动汽车聚合器的模型和约束。包括用户行程的分布模式,并在模型中分析了存储能量的动态过程。理论上证明了电动汽车不能同时充放电的约束在一定条件下是多余的,并通过数值算例说明了电池存储约束的必要性。在IEEE-RTS的案例研究中验证了所提出的模型。结果表明,V2G不仅可以提高热力单元的效率,而且可以促进风电的整合。还分析了影响存储违规的因素。

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