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A Two-Stage Distributionally Robust Coordinated Dispatch for Integrated Electricity and Natural-gas Energy Systems Considering Uncertainty of Wind Power

机译:考虑风能不确定性的综合电力和天然气能量系统的两级分布强大的协调派遣

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Application of gas-fired units and power-to-gas devices promotes coupling between power system and natural gas system,and hence provides an alternative solution for the wind power integration.Also,the traditional stochastic optimization and robust optimization methods may result in uneconomic or conservative decisions in dealing with the uncertain problems.Thus,a data-driven based distributionally robust dispatch model for the integrated electricity and natural gas system is proposed in this paper,which is constructed in a two-stage optimization fashion.The day-ahead total cost for the integrated system is regarded as the optimization objective in the first stage where the forecast wind power information is also taken into consideration while the output adjustment of thermal generation units and the supply regulation of natural gas source are included in the real-time dispatch(second stage in this study).Besides,the norm-1 and norm-inf are simultaneously combined to constrain the confidence set of wind power probability distribution.Then the model is solved by the Column-and-Constraint Generation algorithm.Finally,numerical results verify the effectiveness of the proposed model.
机译:燃气装置和电力 - 气体器件的应用促进了电力系统和天然气系统之间的耦合,因此为风力集成提供了一种替代解决方案.ALSO,传统的随机优化和鲁棒优化方法可能导致不经济或不经济或在处理不确定problems.Thus保守的决定,为一体的综合电力和天然气系统的数据驱动的基于分布式地强大的调度模型在本文中,其在两阶段优化fashion.The提前一天的总建筑提议集成系统的成本被认为是第一阶段的优化目标,其中还考虑了预测风电信息,而热生成单元的输出调整和天然气源的供应调节包括在实时调度中(本研究中的第二阶段)。基础,Norm-1和Norm-Inf同时组合以限制Confi风电概率分布的凹陷集。该模型由列和约束生成算法解决。最后,数值结果验证了所提出的模型的有效性。

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