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Sizing Study of Second Life Li-ion Batteries for Enhancing Renewable Energy Grid Integration

机译:用于增强可再生能源网格整合的二次生命锂离子电池的尺寸研究

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摘要

Renewable power plants must comply with certain codes and requirements to be connected to the grid, being the ramp-rate compliance one of the most challenging requirements, especially for photovoltaic or wind energy generation plants. Battery-based energy storage systems represent a promising solution due to the fast dynamics of electrochemical storage systems, besides their scalability and flexibility. However, large-scale battery energy storage systems are still too expensive to be a mass market solution for the renewable energy resources integration. Thus, in order to make battery investment economically viable, the use of second life batteries is investigated in the paper. This paper proposes a method to determine the optimal sizing of a second life battery energy storage system (SLBESS). SLBESS performance is also validated and, as an ultimate step, the power exchanged with the batteries is calculated during one-year operation. The power profile obtained is further used to define the cycling patterns for laboratory testing of second life batteries and to study their ageing evolution when used for the power smoothing renewable integration application. Real photovoltaic energy generation data from a Spanish plant were used for the study.
机译:可再生能源发电厂必须遵守某些规则和要求才能连接到电网,这是最具挑战性的要求之一,特别是对于光伏或风能发电厂而言,这是最富挑战性的要求之一。基于电池的能量存储系统除了具有可扩展性和灵活性之外,还由于电化学存储系统的快速动态性而成为有前途的解决方案。但是,大规模电池储能系统仍然太昂贵,无法成为可再生能源整合的大众市场解决方案。因此,为了使电池投资在经济上可行,本文研究了二次电池的使用。本文提出了一种确定二次电池储能系统(SLBESS)最佳尺寸的方法。 SLBESS性能也得到了验证,并且作为最终步骤,在一年的运行期间计算了与电池交换的功率。获得的功率曲线还用于定义循环寿命模式,以用于对第二次使用的电池进行实验室测试,并研究其在用于功率平滑可再生集成应用时的老化过程。该研究使用了来自西班牙一家工厂的实际光伏能源发电数据。

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