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Price-based demand response of energy storage resources in commercial buildings

机译:基于价格的商业建筑储能资源需求响应

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This paper presents a closed-loop model in which commercial building aggregators (CBAs) minimize their operating costs in a wholesale electricity market, considering wind power uncertainties that are modeled as contingencies using a set of forecast error scenarios. Specifically, the CBAs determine the optimal energy consumption and reserve deployment of variable speed heat pumps (VSHPs) and plug-in electric vehicles (PEVs) in response to locational marginal prices (LMPs). A two-stage stochastic optimization problem is formulated to model the price-based demand response (DR) of the CBAs. Simulated case studies are performed to estimate variation in the operational costs of the CBAs under various conditions, as determined by the room temperature control methods and the building energy storage resource penetrations.
机译:本文提出了一个闭环模型,其中商业建筑聚集器(CBA)在批发电力市场中将其运营成本降至最低,同时考虑了使用一组预测误差场景将风电不确定性建模为突发事件的情况。具体而言,CBA根据位置边际价格(LMP)确定最佳能耗,并预留变速热泵(VSHP)和插电式电动汽车(PEV)的部署。制定了一个两阶段随机优化问题,以对CBA的基于价格的需求响应(DR)进行建模。进行了模拟案例研究,以估算各种条件下CBA的运营成本的变化,这些变化是由室温控制方法和建筑储能资源渗透率确定的。

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