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Numerical Analysis of High-Performance Lithium-Ion and Lead-Acid Batteries with Capacity Fade for an Off-Grid Residential PV System

机译:离网住宅光伏系统高性能锂离子和铅酸蓄电池容量衰减的数值分析

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This paper introduces and integrates effective models to describe the fundamental characteristics of high-performance lithium-ion (graphite-LiFePO4) and lead-acid (VRLA) batteries with capacity fade for use in an off-grid residential photovoltaic (PV) generation system. The lithium iron phosphate (LFP) and VRLA batteries have been simulated using a 1D electrochemical model with thermal and aging components, and using the CIEMAT model, a general analytical model of the lead-acid battery, respectively. In the off-grid PV/battery/demand system, the calculated annual state of charge (SOC) distribution and time history of degradation in the LFP and VRLA batteries describe the internal battery behaviors and the blackout risk; the LFP battery is expected to accomplish a one-third lower annual blackout frequency and a 25% longer degradation time than a VRLA battery with a 24-kWh battery capacity over 15years of operation. According to the calculated loss and surplus electricity indexes, the LFP battery has a remarkably long life and high charge/discharge efficiency, even with a variable current and in long-term operation.
机译:本文介绍并整合了有效的模型,以描述用于离网住宅光伏(PV)发电系统的高性能锂离子(石墨LiFePO4)和铅酸(VRLA)电池的基本特性,其容量会逐渐减小。磷酸铁锂(LFP)和VRLA电池已分别使用具有热和老化成分的一维电化学模型以及铅酸电池的通用分析模型CIEMAT模型进行了模拟。在离网光伏/电池/需求系统中,所计算的LFP和VRLA电池的年度充电状态(SOC)分布以及退化的时间历史记录描述了内部电池的行为和停电风险;与15年使用24 kWh电池的VRLA电池相比,LFP电池的年度停电频率预计降低三分之一,降解时间延长25%。根据计算得出的损耗和剩余电量指标,即使在可变电流和长期运行的情况下,LFP电池也具有非常长的使用寿命和较高的充电/放电效率。

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