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Decentralized scheduling strategy of heating systems for balancing the residual load

机译:用于平衡剩余负荷的供热系统的分散调度策略

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This paper introduces a decentralized scheduling scheme for electro-thermal heating systems i.e. heat pumps and combined heat and power units. The scheduling is modeled as a mixed integer linear optimization program (MILP) and reformulated based on the Dantzig-Wolfe decomposition method. The decomposed problem is solved by means of an iterative column generation algorithm that is modified to solve MILPs. The aim is thereby to enhance the integration of renewable energy sources by matching demand and supply. The architecture is based on a cooperative multi-agent system. A centralized scheduling approach is used as a reference to assess the performance of the decentralized concept. The analysis comprises a cluster of existing residential buildings. The results show that the centralized scheduling delivers the best coordination with a limited extendability. The decentralized scheduling presents a slightly lower coordination with a great potential for scalability. Moreover, the decentralized scheduling is based on an emphasized local intelligence which allows for reducing the communication of sensible data. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了电热采暖系统(即热泵以及热电联产)的分散调度方案。该调度被建模为混合整数线性优化程序(MILP),并基于Dantzig-Wolfe分解方法重新制定。分解问题通过迭代列生成算法解决,该算法经过修改以解决MILP。因此,目的是通过匹配需求和供应来增强可再生能源的整合。该体系结构基于协作多代理系统。集中式调度方法用作评估分散概念的性能的参考。分析包括一组现有的住宅建筑。结果表明,集中式调度在有限的可扩展性下提供了最佳的协调。分散调度的协调性稍低,具有很大的可扩展性。此外,分散式调度基于强调的本地智能,该本地智能允许减少敏感数据的通信。 (C)2015 Elsevier Ltd.保留所有权利。

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