Optimization of two operation strategies for batteries in the low voltage grid

Arturo José Montealegre Pallares, A. Pavas
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Abstract

Due to the high amount of installed solar power systems in Germany, the low-voltage distribution grids reach their maximum capacities in periods of high solar radiation. In order to ensure a proper integration of solar power systems into the grid, grid reinforcement is a common method to increase the transmission capacity. As an alternative to this costly solution, local battery storage systems can be used to store the surplus generation and limit the feed-in power of the solar power systems into the grid. In paper “Operational Strategies for Battery Storage Systems in Low-voltage Distribution Grids to Limit the Feed-in Power of Roof-mounted Solar Power Systems” are proposed two different operational strategies for battery storage systems, the first strategy or Feed-in chopping and the second strategy or Feed-in damping. After publishing this work, is the implementation of the strategies necessary and perform one operational comparison of the strategies, this our work, first, the optimization of the strategies in order to use the maximum battery capacity and consequentially reduce the feed-in power to the low-voltage grid and second, the implementation of this optimized strategies into the laboratory and determine which of the two operational strategies is the best and in which cases is recommendable the utilization of the first or second strategy.
低压电网中蓄电池两种运行策略的优化
由于德国安装了大量的太阳能发电系统,低压配电网在太阳辐射高的时期达到最大容量。为了确保太阳能发电系统合理并网,电网加固是增加输电容量的常用方法。作为这种昂贵的解决方案的替代方案,本地电池存储系统可以用来存储多余的发电,并限制太阳能发电系统进入电网的馈电。本文在“限制屋顶太阳能发电系统馈电功率的低压配电网电池储能系统运行策略”的基础上,提出了两种不同的电池储能系统运行策略,即第一种策略或馈电切断策略和第二种策略或馈电阻尼策略。本工作发表后,是实施策略所必需的,并对策略进行了一次运行比较,本工作首先对策略进行了优化,以便最大限度地利用电池容量,从而减少对低压电网的馈电功率;在实验室中实施这种优化策略,并确定两种操作策略中哪一种是最好的,在哪些情况下推荐使用第一种或第二种策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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