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A game theory-based decentralized control strategy for power demand management of building cluster using thermal mass and energy storage

机译:基于博弈论的分散控制策略,用于利用热质量和能量存储的建筑群电力需求管理

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摘要

The development of smart grids requires more active and effective participation of buildings in power balance. However, most of building demand management and demand response control strategies focus on single buildings only. For a group of buildings at cluster-level, which are often involved in an electricity charge account, such control strategies will not be effective. A game theory-based decentralized control strategy is therefore developed to address the demand management of cluster-level buildings. The indoor temperature set point and the charging/discharging process of active cold storages in central air-conditioning systems are optimized simultaneously. Rather than optimizing the power demand of all buildings on a central optimization system, the proposed strategy optimizes the power demand of all buildings collectively in a decentralized manner. Using this strategy, buildings manage their own power demands locally only using the aggregated power demand of building cluster as the common reference for their demand controls. This distributed computing allows the optimization of large systems or complex optimization problems to be divided into a few simple optimization tasks, providing enhanced applicability and robustness in practical applications. Case studies are conducted and results show that the proposed game theory-based decentralized control strategy can increase the aggregated peak demand reduction and electricity cost saving more than two times compared with that when the demand management of building cluster is conducted in an uncoordinated manner. Meanwhile, the control performance of proposed decentralized strategy is close to that using a perfect demand management control strategy.
机译:智能电网的发展要求建筑物更加积极有效地参与电力平衡。但是,大多数建筑物需求管理和需求响应控制策略仅针对单个建筑物。对于通常涉及电费帐户的一组群集级别的建筑物,此类控制策略将无效。因此,开发了一种基于博弈论的分散控制策略,以解决集群级别建筑物的需求管理问题。同时优化了中央空调系统的室内温度设定点和主动式冷藏库的充/放电过程。所提出的策略不是在中央优化系统上优化所有建筑物的电力需求,而是以分散的方式共同优化所有建筑物的电力需求。使用此策略,建筑物仅使用建筑物群集的合计电力需求作为其需求控制的通用参考来本地管理自己的电力需求。这种分布式计算允许将大型系统的优化或复杂的优化问题划分为几个简单的优化任务,从而在实际应用中提供增强的适用性和鲁棒性。进行了案例研究,结果表明,与不协调进行建筑群需求管理相比,基于博弈论的分散控制策略可以使总峰值需求降低和电费节省提高两倍以上。同时,所提出的分散策略的控制性能接近于使用完美需求管理控制策略的控制性能。

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