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An Interval Based Cost-emissions Optimization Strategy for Gas-electricity Integrated Energy Systems Under Uncertainty and Demand Response

机译:基于间隔的不确定性和需求响应的气体综合能源系统的间隔成本 - 排放优化策略

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The natural gas network and the electricity network are tightly integrated in popular Energy Internet frameworks. This paper focuses on an operation strategy to optimize the operating cost and the emissions of gas-electricity integrated energy systems (GEIES). The wind power, pumped storage station and demand response are considered as key influence factors in the strategy. The strategy is based on interval optimization. In the presented strategy, the model of gas network and the electricity network are established, the operating cost models, emissions models and operation constrains, especially. The pumped storage station and the incentive demand response are integrated into the optimization model to optimize operational performances of GEIES. Moreover, the interval mathematics is introduced to address wind power uncertainty. Detailed experiment results demonstrate that the proposed strategy is a feasible way to reduce the operating cost and the emissions of GEIES.
机译:天然气网络和电网紧紧集成在流行的能源互联网框架中。本文重点介绍了优化运营成本和天然气集成能源系统(景点)的运营成本和排放的操作策略。风电,泵送存储站和需求响应被认为是该策略中的关键影响因素。该策略基于间隔优化。在呈现的策略中,建立了天然气网络和电网的模型,操作成本模型,排放模型和操作约束,特别是。泵送存储站和激励需求响应被集成到优化模型中,以优化景角的操作性能。此外,引入了间隔数学以解决风力的不确定性。详细的实验结果表明,拟议的策略是减少景点运营成本和排放的可行方法。

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