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Capacity Estimation of a Utility-Scale Lithium Ion Battery in an Autarchic Environment by Comparing two Different Battery Models

机译:通过比较两种不同电池型号的自动环境中公用尺度锂离子电池的容量估计

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The autarchic communities are an attractive scenario that more and more local actors strive to achieve. In electricity autonomous cases a battery system stands as prerequisite to succeed renewables time shifting due to the intermittent nature of decentralized generation. In the present study the local autarky in the electricity sector is examined for a system composed of a photovoltaic installation, a wind farm, a biogas combined heat power plant and a battery. The selected storage system is a Lithium Ion battery and two different modelling alternatives have been applied. Consequently, the two system versions have been tested for three autonomous case study regions in north, central and south Germany. The system is subsequently operated, and the minimum battery capacity is estimated for each case study based on dynamic simulations. Simulation results indicate that the autarky in the electricity sector can be feasible, but the capacity is underestimated almost up to 30%, if the aging effect of the battery is neglected and the efficiency grade is considered steady. Moreover, outcomes show that the calculated battery capacity is higher for the south city due to the solar power variability as an outcome of the seasonal variation.
机译:独裁社区是一个有吸引力的情景,即越来越多的当地演员努力实现。在电力自治病例中,电池系统被视为成功的先决条件,因为由于分散的生成的间歇性本质,因此成功的可再生能源时间转移。在本研究中,检查电力扇区中的局部自动覆盖用于由光伏安装,风电场,沼气组合的热发电厂和电池组成的系统。所选存储系统是锂离子电池,并施加了两个不同的建模替代品。因此,已经在北部,中南部和南部的三个自治案例研究区域测试了这两个系统版本。随后操作系统,基于动态模拟的每种案例研究估计最小电池容量。模拟结果表明,如果电池的老化效果被忽略,并且效率等级被认为是稳定的,则电力部门中的自动架可能是可行的,但容量低至30%,但效率等级被认为是稳定的。此外,结果表明,由于太阳能可变性作为季节变异的结果,所计算的电池容量较高。

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