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Rolling horizon optimization for real-time operation of thermostatically controlled load aggregator

机译:滚动水平优化,用于恒温控制负载聚合器的实时运行

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Thermostatically controlled loads (TCLs) have great potentials to participate in the demand response programs due to their flexibility in storing thermal energy. The two-way communication infrastructure of smart grids provides opportunities for the smart buildings/houses equipped with TCLs to be aggregated in their participation in the electricity markets. This paper focuses on the realtime scheduling of TCL aggregators in the power market using the structure of the Nordic electricity markets a case study. An International Organization of Standardization (ISO) thermal comfort model is employed to well control the occupants' thermal comfort, while a rolling horizon optimization (RHO) strategy is proposed for the TCL aggregator to maximize its profit in the regulation market and to mitigate the impacts of system uncertainties. The simulations are performed by means of a metaheuristic optimization algorithm, i.e., natural aggregation algorithm (NAA). A series of simulations are conducted to validate the effectiveness of proposed method.
机译:恒温控制负载(TCL)具有存储热能的灵活性,因此具有参与需求响应程序的巨大潜力。智能电网的双向通讯基础设施为配备TCL的智能建筑/房屋提供了参与其电力市场的机会。本文以北欧电力市场的结构为例,重点研究电力市场中TCL聚合器的实时调度。采用国际标准化组织(ISO)热舒适模型来很好地控制乘员的热舒适,同时为TCL聚合器提出了滚动优化(RHO)策略,以最大程度地提高其在监管市场中的利润并减轻影响系统不确定性。通过元启发式优化算法即自然聚集算法(NAA)进行仿真。进行了一系列仿真,以验证所提出方法的有效性。

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