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Optimal demand response strategy of a portfolio of multiple commercial buildings: Methods and a case study

机译:多个商业建筑组合的最优需求响应策略:方法和案例研究

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Commercial building demand response control is an effective way to reduce summer electrical peak demand in cities. However, a portfolio of a large number of buildings has different demand response control strategies than individual buildings. In this article, an optimization method is proposed for scheduling demand response strategies for multiple commercial buildings that can be recognized as a multi-building portfolio during demand response. Through this optimal scheduling, decision makers can determine which buildings should participate in the demand response program that controls the strategies that should be used as well as the corresponding optimum starting/ending time. In this article, the optimal scheduling problem is converted into a time series 0-1 programming problem and is solved by the Branch and Bound method, with three optimization objectives of smooth reduction, maximum reduction, and maximum economic benefits. As a pilot demand response case test, the measured data for 18 large commercial buildings (as a multi-building portfolio) in a recent large-scale demand response experiment were used to evaluate the effectiveness of the optimal scheduling method. The results demonstrated that the optimal scheduling scheme can significantly improve the demand response effectiveness of a large number of buildings together.
机译:商业建筑需求响应控制是减少城市夏季电力高峰需求的有效方法。但是,与单个建筑物相比,大量建筑物的投资组合具有不同的需求响应控制策略。在本文中,提出了一种用于调度多个商业建筑物的需求响应策略的优化方法,该方法可以在需求响应期间被视为多建筑物投资组合。通过这种最佳调度,决策者可以确定哪些建筑物应参与需求响应程序,该程序控制应使用的策略以及相应的最佳开始/结束时间。本文将最优调度问题转化为时间序列0-1的规划问题,并通过Branch and Bound方法进行求解,具有平滑减少,最大减少和最大经济效益这三个优化目标。作为试点需求响应案例测试,最近的大规模需求响应实验中使用了18座大型商业建筑(作为多层建筑组合)的测量数据来评估最佳调度方法的有效性。结果表明,最优调度方案可以显着提高大量建筑物的需求响应效率。

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