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Second life battery energy storage system for enhancing renewable energy grid integration

机译:二次电池存储系统,用于增强可再生能源电网的整合

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摘要

Connecting renewable power plants to the grid must comply with certain codes and requirements. One requirement is the ramp rate constraint, which must be fulfilled in order to avoid penalties. As this service becomes compulsory with an increased grid penetration of renewable, all possible solutions must be explored especially that large battery energy storage systems are still expensive solutions. Thus, in order to make battery investment economic viable, the use of second life batteries is investigated in the present work. This paper proposes a method for determining firstly, the optimal rating of a second life battery energy storage system (SLBESS) and secondly, to obtain the power exchange and battery state of charge profiles during the operation. These will constitute the cycling patterns for testing batteries and studying the ageing effect of this specific application. Real data from the Spanish electricity market for a whole year are used for validating the results.
机译:将可再生能源发电厂连接到电网必须符合某些规范和要求。一个要求是斜率限制,必须避免斜率限制。随着这项服务随着可再生能源在电网中的渗透率的提高而变得强制性,必须探索所有可能的解决方案,尤其是大型电池储能系统仍然是昂贵的解决方案。因此,为了使电池投资经济可行,在当前工作中研究了二次电池的使用。本文提出一种方法,该方法首先确定二次电池储能系统(SLBESS)的最佳额定值,其次确定运行过程中的功率交换和电池充电状态。这些将构成用于测试电池和研究此特定应用的老化效果的循环模式。来自西班牙电力市场的全年真实数据用于验证结果。

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