Integration of LFP-second life batteries as a storage in a smart microgrid

Óscar Izquierdo-Monge, Nicolás Alonso González, Paula Peña-Carro, Gonzalo Martín-Jiménez
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Abstract

 In recent years, there has been an increasing commitment to give batteries a second life, as they are being consumed for different uses and the recycling methods are not defined. This work aims to show how a storage system based on disused Lithium Iron Phosphate (LFP) batteries has been recovered and integrated into the CE.D.E.R- CIEMAT smart microgrid over a period of ten years during which the operation of the system has been affected. During the recovery process, the cells have been classified according to their voltage, and a series of charge-discharge processes have been carried out on them at different voltages to determine their state of health and capacity. Once characterised, the system was assembled and commissioned with the appropriate cells. In addition, for the storage system, a Supervisory Control And Data Acquisition (SCADA) has been developed in Home Assistant for its integration into the CE.D.E.R.'s microgrid management system. This allows the microgrid to be managed more efficiently, storing surplus energy from distributed generation sources and discharging the stored energy during peak consumption periods to reduce peaks, reduce discharges to the distribution grid and reduce the cost of electricity bills.
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LFP-second life电池在智能微电网中的集成存储
近年来,越来越多的人承诺给电池第二次生命,因为它们被用于不同的用途,而回收方法没有明确规定。这项工作旨在展示基于废弃磷酸铁锂(LFP)电池的存储系统如何被回收并集成到CE.D.E中。R- CIEMAT智能微电网为期十年,在此期间系统的运行已经受到影响。在回收过程中,根据电池的电压对其进行分类,并在不同电压下对其进行一系列充放电过程,以确定其健康状态和容量。一旦确定了特征,系统就被组装起来,并使用合适的细胞进行调试。此外,对于存储系统,家庭助理开发了一个监控和数据采集(SCADA)系统,将其集成到CE.D.E.R中。微电网管理系统。这使得微电网得到更有效的管理,从分布式发电源储存多余的能量,并在用电高峰期间释放储存的能量,以减少用电高峰,减少向配电网的排放,降低电费成本。
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