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首页> 外文期刊>IEEE transactions on industrial informatics >Two-Stage Distributionally Robust Optimization for Energy Hub Systems
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Two-Stage Distributionally Robust Optimization for Energy Hub Systems

机译:用于能量中心系统的两阶段分布鲁棒优化

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摘要

Energy hub system (EHS) incorporating multiple energy carriers, storage, and renewables can efficiently coordinate various energy resources to optimally satisfy energy demand. However, the intermittency of renewable generation poses great challenges on optimal EHS operation. This article proposes an innovative distributionally robust optimization model to operate EHS with an energy storage system (ESS), considering the multimodal forecast errors of photovoltaic (PV) power. Both battery and heat storage are utilized to smooth PV output fluctuation and improve the energy efficiency of EHS. This article proposes a novel multimodal ambiguity set to capture the stochastic characteristics of PV multimodality. A two-stage scheme is adopted, where 1) the first stage optimizes EHS operation cost, and 2) the second stage implements real-time dispatch after the realization of PV output uncertainty. The aim is to overcome the conservatism of multimodal distribution uncertainties modeled by typical ambiguity sets and reduce the operation cost of EHS. The presented model is reformulated as a tractable semidefinite programming problem and solved by a constraint generation algorithm. Its performance is extensively compared with widely used normal and unimodal ambiguity sets. The results from this article justify the effectiveness and performance of the proposed method compared to conventional models, which can help EHS operators to economically consume energy and use ESS wisely through the optimal coordination of multienergy carriers.
机译:能量集线器系统(EHS)包含多个能量载波,存储和可再生能源可以有效地协调各种能源以最佳地满足能源需求。然而,可再生生成的间歇性对最佳EHS操作产生了极大的挑战。本文提出了一种创新的分布稳健优化模型,用于使用能量存储系统(ESS)进行EHS,考虑到光伏(PV)功率的多峰预测误差。电池和蓄热器都用于平滑PV输出波动并提高EHS的能量效率。本文提出了一种新型多模态模糊设定,以捕获光伏多模的随机特征。采用了两级方案,其中1)第一阶段优化EHS运营成本,2)第二阶段在实现PV输出不确定性之后实现实时分派。目的是克服由典型的模糊组建模的多式联分布不确定性的保守主义,并降低EHS的运营成本。所提出的模型被重新重新重整为贸易的半纤维编程问题,并通过约束生成算法解决。它的性能与广泛使用的正常和单峰模糊套相比广泛。本文的结果证明了所提出的方法的有效性和性能与传统模型相比,这可以帮助EHS运营商经济地消耗能量,并明智地使用符号使用多元素载体的最佳协调。

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