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Storage-like devices in load leveling: Complementarity constraints and a new and exact relaxation method

机译:负载均衡中的类似存储的设备:互补性约束和新的精确松弛方法

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Storage-like devices (SLDs), which include energy storage systems as well as devices with similar properties such as electric vehicles, can be exploited for load leveling. However, to prevent simultaneous charging and discharging of an SLD, complementarity constraints should be included in the optimization model, which makes the problem strongly non-convex. Mixed-integer programming (MIP) methods are commonly used to solve such problems; however, this results in long solution time to achieve an approximate optimal solution. Therefore, a method to efficiently find optimal solutions of load-leveling problems with SLDs is desirable. Here, we report a load-leveling optimization model for a system with SLDs and show that the complementarity constraints can be exactly relaxed under two sufficient conditions so that a convex relaxed model can be solved instead. Moreover, the exactness of the relaxation can be determined prior to solving the relaxed model, and the sufficient conditions are usually satisfied in practical situations. The numerical studies verify the theoretical analysis and show that an equally good optimal solution of the load-leveling problem with SLDs can be obtained far more efficiently by using the proposed method than a commonly used MIP method. (C) 2015 Elsevier Ltd. All rights reserved.
机译:包括能量存储系统以及具有类似特性的设备(如电动汽车)的类存储设备(SLD)可以用于负载均衡。但是,为防止同时对SLD充电和放电,在优化模型中应包括互补性约束,这会使问题变得非常不凸。混合整数编程(MIP)方法通常用于解决此类问题。但是,这会导致求解时间较长,从而无法达到最佳的求解效果。因此,需要一种有效地找到具有SLD的负载均衡问题的最佳解决方案的方法。在这里,我们报告了一个具有SLD的系统的负载均衡优化模型,并表明可以在两个足够的条件下精确地放松互补约束,从而可以求解凸松弛模型。此外,可以在求解松弛模型之前确定松弛的准确性,并且通常在实际情况下满足充分条件。数值研究验证了理论分析,并表明,与常用的MIP方法相比,使用所提出的方法可以更有效地获得SLD的负载均衡问题的最佳解决方案。 (C)2015 Elsevier Ltd.保留所有权利。

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