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Joint Optimal Design and Operation of Hybrid Energy Storage Systems

机译:混合储能系统的联合优化设计与运行

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摘要

The wide range of performance characteristics of storage technologies motivates the use of a hybrid energy storage system (HESS) that combines the best features of multiple technologies. However, HESS design is complex, in that it involves the choice of storage technologies, the sizing of each storage element, and deciding when to charge and discharge each underlying storage element (). We formulate the problem of jointly optimizing the sizing and the operating strategy of an HESS that can be used for a large class of applications and storage technologies. Instead of a single set of storage element sizes, our approach determines the of the sizes of the storage elements along with the corresponding optimal operating strategy. Thus, as long as the performance objective of a storage application (such as an off-grid microgrid) can be expressed as a linear combination of the underlying storage sizes, the optimal vector of storage sizes falls somewhere on this frontier. We present two case studies to illustrate our approach, demonstrating that a single storage technology is sometimes inadequate to meet application requirements, unlike an HESS designed using our approach. We also find simple, near-optimal, and practical operating strategies for these case studies, which allows us to gain several new engineering insights.
机译:存储技术的广泛性能特征促使人们使用混合能量存储系统(HESS),该系统结合了多种技术的最佳功能。但是,HESS设计很复杂,因为它涉及到存储技术的选择,每个存储元素的大小以及决定何时对每个基础存储元素进行充电和放电的时间。我们提出了共同优化可用于大型应用程序和存储技术的HESS的大小和操作策略的问题。我们的方法不是确定一组存储元素的大小,而是确定存储元素的大小以及相应的最佳操作策略。因此,只要存储应用程序(例如离网微电网)的性能目标可以表示为基础存储大小的线性组合,则存储大小的最佳向量就落在此边界上。我们通过两个案例研究来说明我们的方法,这表明与使用我们的方法设计的HESS不同,单一存储技术有时不足以满足应用程序要求。我们还为这些案例研究找到了简单,接近最佳和实用的操作策略,这使我们获得了一些新的工程见解。

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