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首页> 外文期刊>IEEE Transactions on Power Systems >Distributionally Robust Co-Optimization of Energy and Reserve for Combined Distribution Networks of Power and District Heating
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Distributionally Robust Co-Optimization of Energy and Reserve for Combined Distribution Networks of Power and District Heating

机译:分布稳健的能量和电力电力和地区供热组合网络的能量和储备

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摘要

The combined operations of power distribution and district heating networks catalyze ongoing progressions to smart cities. This paper proposes a distributionally robust energy and reserve co-optimization approach for combined power distribution and district heating networks. In particular, smart buildings are modeled as equivalent storage devices representing cost-effective resources to enhance operational flexibility and provide additional reserves in power systems. Uncertainties pertaining to renewable energy resource power and ambient temperature are captured within an ambiguity set that comprises a variety of statistical characterizations (e.g., the expected value, the variance, and the covariance) to generate more trustworthy and less conservative solutions. Linear decision rules and the second-order cone duality are employed to enhance the computational tractability of the proposed approach by transforming the original problem into a second-order cone program. Finally, numerical results provided based on the real-world Barry Island system demonstrate the risk-reduction and economic benefits of the proposed approach.
机译:配电和区供暖网络的综合作战促使持续进展到智能城市。本文提出了一种用于组合配电和地区供热网络的分布鲁棒能量和储备共同优化方法。特别是,智能建筑被建模为代表经济高效资源的等效存储设备,以提高操作灵活性,并提供电力系统中的额外储备。与可再生能源资源和环境温度有关的不确定性在含糊的模糊集中被捕获,该模糊集包括各种统计表征(例如,预期值,方差和协方差),以产生更可靠和更少保守的解决方案。采用线性决策规则和二阶锥形二元性来增强所提出方法的计算途径通过将原始问题转换为二阶锥程序。最后,基于现实世界的巴里岛系统提供的数值结果表明了所提出的方法的风险减少和经济效益。

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