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A Decentralized Framework for the Optimal Coordination of Distributed Energy Resources

机译:分布式能源优化协调的分散框架

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Demand-response aggregators are faced with the challenge of how to best manage numerous and heterogeneous distributed energy resources (DERs). This paper proposes a decentralized methodology for optimal coordination of DERs. The proposed approach is based on Dantzig–Wolfe decomposition and column generation, thus allowing to integrate any type of resource whose operation can be formulated within a mixed-integer linear program. We show that the proposed framework offers the same guarantees of optimality as a centralized formulation, with the added benefits of distributed computation, enhanced privacy, and higher robustness to changes in the problem data. The practical efficiency of the algorithm is demonstrated through extensive computational experiments, on a set of instances generated using data from Ontario energy markets. The proposed approach was able to solve all test instances to proven optimality, while achieving significant speed-ups over a centralized formulation solved by state-of-the-art optimization software.
机译:需求响应聚合者面临着如何最好地管理众多异构能源分布的挑战。本文提出了一种分布式方法,以优化DER。所提出的方法基于Dantzig-Wolfe分解和列生成,因此可以集成可以在混合整数线性程序中确定其运算的任何类型的资源。我们表明,提出的框架提供了与集中式公式相同的最佳保证,并具有分布式计算,增强的隐私性和对问题数据的更改更高的鲁棒性的附加好处。通过使用安大略省能源市场数据生成的一组实例,通过广泛的计算实验证明了该算法的实际效率。所提出的方法能够解决所有测试实例达到公认的最优性,同时在通过最先进的优化软件解决的集中公式上实现了显着的加速。

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