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Technico-economic assessment of a lead-acid battery bank for standalone photovoltaic power plant

机译:独立光伏电站铅酸蓄电池组的技术经济评估

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In this work, we will present and discuss the results of a long-term monitoring of a lead-acid battery bank, which is a part of a modular 7.2 kWpstandalone photovoltaic power plant. Indeed, technical parameters such as the state of charge (SOC), battery voltage/temperature, and charging/discharging currents were monitored together with power flow into and out of the battery inverter. The incremental charge/discharge efficiency between two SOCs, the duration of charge (Tc) and discharge (Td) cycles, Coulomb efficiency and the internal resistance of the battery bank, were evaluated from the measured data. Furthermore, a statistical analysis of the SOC was performed in order to specify the delivered energy from the battery bank. This allowed the assessment and a detailed understanding of the system operating performance from a technical and economical point of view.The average minimum and maximum SOC of the battery were found to be respectively, 34.0% and 87.45%, for the monitored period. The incremental cycle efficiency (Ycd) was found to vary between 68 and 90%. A low efficiency is usually observed when either the charge or the discharge durations are small (or the corresponding currents are high). The Coulomb efficiency is marked by a quasi-constant degradation rate of 1.8% per year, and the internal resistance of the battery bank increased from 0.07 to 0.27 Ohms during the 4 year monitoring period. From the monitoring of these parameters, and by using real costs, the levelized cost of storage (LCOS) was determined for various discount and capacity degradation rates as well as battery bank replacement periods. The calculated LCOS was affected by the discount rate and the replacement period of the battery bank. Additionally, the LCOS analysis revealed that for PV standalone systems lead-acid battery is more cost effective than li-ion on the short term. The latter storage technology is expected to be cost effective for medium and long term.
机译:在这项工作中,我们将介绍和讨论铅酸蓄电池组的长期监视结果,该蓄电池组是模块化7.2 kW独立光伏电站的一部分。实际上,已经监测了诸如充电状态(SOC),电池电压/温度和充电/放电电流之类的技术参数,以及流入和流出电池逆变器的功率。根据测量数据评估两个SOC之间的增量充电/放电效率,充电持续时间(Tc)和放电持续时间(Td),库仑效率和电池组的内部电阻。此外,对SOC进行了统计分析,以指定从电池组输出的能量。这样可以从技术和经济角度评估和详细了解系统的运行性能。在监视期内,电池的平均最小SOC和最大SOC分别为34.0%和87.45%。发现增量循环效率(Ycd)在68%至90%之间。通常,当充电或放电持续时间较小(或相应的电流较高)时,效率较低。库仑效率以每年1.8%的准恒定退化率为标志,并且在4年的监测期内,电池组的内部电阻从0.07欧姆增加到0.27欧姆。通过监视这些参数并使用实际成本,可以确定各种折扣和容量降级率以及电池组更换期的平均存储成本(LCOS)。计算得出的LCOS受折扣率和电池组更换时间的影响。此外,LCOS分析显示,就PV独立系统而言,铅酸电池在短期内比锂离子电池更具成本效益。后者的存储技术预计在中长期内具有成本效益。

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