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Optimal sizing of battery energy storage in a microgrid considering capacity degradation and replacement year

机译:考虑到容量退化和更换年份的微电池中电池储能的最佳尺寸

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摘要

Nowadays, microgrids (MGs) have received significant attention. In a cost-effective MG, battery energy storage (BES) plays an important role. One of the most important challenges in the MGs is the optimal sizing of the BES that can lead to the MG better performance, more flexible, effective, and efficient than traditional power systems. This paper proposes a novel set of formulations to determine the optimal BES size, technology, depth of discharge (DOD), and replacement year considering its technical characteristics, service life, and capacity degradation to minimize the MG scheduling total cost and improve the precision and economic feasibility of the BES sizing method. Moreover, the modeling of BES considering capacity degradation is presented. The proposed model of the planning problem is formulated using mixed-integer linear programming (MILP) to ensure the convergence of the optimization problem. The effectiveness of the proposed approach is confirmed by numerical simulation based on historical data of a real MG.
机译:如今,微电网(MGS)受到了重大关注。在经济高效的MG中,电池储能(BES)起着重要作用。 MGS中最重要的挑战之一是BES的最佳尺寸,可以导致MG更好的性能,更灵活,有效,高于传统的电力系统。本文提出了一种新颖的配方,以确定最佳的BES大小,技术,放电深度(DOD),以及考虑其技术特征,使用寿命和能力劣化,以最大限度地降低MG调度总成本并提高精度和提高精度BES尺寸的经济可行性。此外,提出了考虑能力降解的建模。使用混合整数线性编程(MILP)配制了规划问题的建议模型,以确保优化问题的收敛性。基于真实MG的历史数据,通过数值模拟证实了所提出的方法的有效性。

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