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Demand response and energy storage systems: An industrial application for reducing electricity costs. Part I: Theoretical aspects

机译:需求响应和能量存储系统:用于降低电费的工业应用。第一部分:理论方面

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In this paper, the benefits that can be derived from the installation of an energy storage system in an industrial facility are analyzed, and an optimal control strategy of the storage system is proposed. The proposed control strategy is based on a two-step procedure and aims at (i) reducing the electricity costs sustained by an industrial customer that provides demand response and (ii) satisfying technical constraints for the maximization of the efficiency and lifecycle of the storage system. The procedure was performed based on two different time periods, i.e., day ahead and very short time. The day-ahead scheduling evaluates the peak value of the power that the facility must request from the grid and the periods in which the battery is allowed to charge and discharge; the very short-time control evaluates the battery's charging/discharging power to minimize costs. This paper reports the theoretical aspects of the optimization models for the two-step procedure, whereas the companion paper “Part II: numerical applications” proposes the results of numerical applications of the proposed approach on an actual industrial facility.
机译:本文分析了在工业设施中安装储能系统所能带来的好处,并提出了一种优化的储能系统控制策略。拟议的控制策略基于两步程序,其目的是(i)降低提供需求响应的工业客户所承受的电力成本,以及(ii)满足技术约束以最大程度地提高存储系统的效率和生命周期。该程序是根据两个不同的时间段(即提前一天和很短的时间)执行的。日程安排会评估设施必须向电网请求的功率峰值以及允许电池充电和放电的时间段;非常短的时间控制可以评估电池的充电/放电功率,从而最大程度地降低成本。本文报告了两步过程优化模型的理论方面,而随附的论文“第二部分:数值应用”则提出了该方法在实际工业设施上的数值应用结果。

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