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Multiobjective Synergistic Scheduling Optimization Model for Wind Power and Plug-In Hybrid Electric Vehicles under Different Grid-Connected Modes

机译:并网模式下风电和插电式混合动力汽车的多目标协同调度优化模型

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In order to promote grid’s wind power absorptive capacity and to overcome the adverse impacts of wind power on the stable operation of power system, this paper establishes benefit contrastive analysis models of wind power and plug-in hybrid electric vehicles (PHEVs) under the optimization goal of minimum coal consumption and pollutant emission considering multigrid connected modes. Then, a two-step adaptive solving algorithm is put forward to get the optimal system operation scheme with the highest membership degree based on the improvedεconstraints method and fuzzy decision theory. Thirdly, the IEEE36 nodes 10-unit system is used as the simulation system. Finally, the sensitive analysis for PHEV’s grid connected number is made. The result shows the proposed algorithm is feasible and effective to solve the model. PHEV’s grid connection could achieve load shifting effect and promote wind power grid connection. Especially, the optimization goals reach the optimum in fully optimal charging mode. As PHEV’s number increases, both abandoned wind and thermal power generation cost would decrease and the peak and valley difference of load curve would gradually be reduced.
机译:为了提高电网的风电吸收能力,克服风电对电力系统稳定运行的不利影响,建立了优化目标下的风电和插电式混合动力汽车的效益对比分析模型。多网格连接模式的最低煤炭消耗和污染物排放量的估算。然后,基于改进的ε约束方法和模糊决策理论,提出了两步自适应求解算法,以得到隶属度最高的最优系统运行方案。第三,将IEEE36节点10单元系统用作仿真系统。最后,对PHEV的并网号进行敏感分析。结果表明,所提出的算法是可行且有效的。 PHEV的电网连接可以实现负载转移效果,并促进风力发电的电网连接。特别地,优化目标在完全最佳的充电模式下达到最佳。随着PHEV数量的增加,废弃风能和火力发电的成本都将减少,负荷曲线的峰谷差将逐渐减小。

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