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Stochastic optimal operation model for a distributed integrated energy system based on multiple-scenario simulations

机译:基于多场景模拟的分布式集成能源系统随机最优运行模型

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Problems related to the uncertainties of the sources and loads in integrated energy systems (IESs) are becoming more prominent with the interconnection of large-scale renewable energy sources and multi-energy loads. Moreover, such scenarios pose great challenges for the optimal operation of IESs. A distributed IES in an industrial park is regarded as the research object, and a stochastic optimal operation model based on multiple-scenario simulations is proposed to consider the prediction uncertainties arising in the case of distributed power generation and multi-energy loads. Specifically, scenario analysis for stochastic optimization is applied to address these prediction uncertainties in a two-part approach: operation scenario generation based on Latin hypercube sampling (LHS) and the reduction of multiple scenarios into a smaller number of more general scenarios based on K-means. Afterwards, a day-ahead stochastic optimal operation model for a distributed IES with the total operating economy as the decision-making objective is proposed based on typical operation scenarios. Moreover, the overall energy efficiency and new energy consumption capacity are all considered. In this way, the safe and economical operation of the IES can be guaranteed even under the negative influence of uncertainties. The validity and rationality of the proposed model are verified by analysis of examples. (C) 2020 Elsevier Ltd. All rights reserved.
机译:与综合能源系统(IESS)的来源和负载的不确定性有关的问题与大规模可再生能源和多能量负载的互连变得更加突出。此外,这种情景对IESS的最佳操作构成了巨大挑战。工业园区中的分布式IE被视为研究对象,提出了一种基于多场景模拟的随机最佳操作模型,以考虑在分布发电和多能量负载的情况下产生的预测不确定性。具体而言,应用随机优化的场景分析来解决两部分方法的预测不确定性:基于拉丁超立体采样(LHS)的操作场景生成,并将多种方案的减少到基于k的较少数量的一般情景中的多个方案方法。之后,基于典型的操作场景,提出了一种具有总运营经济的分布式IE的前方随机最佳运行模型。此外,整体能源效率和新能耗容量都得到了考虑。通过这种方式,即使在不确定性的负面影响下也可以保证IES的安全和经济操作。通过对示例的分析验证所提出模型的有效性和合理性。 (c)2020 elestvier有限公司保留所有权利。

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