首页> 外文期刊>Journal of Energy Storage >Techno-economic analysis of lithium-ion and lead-acid batteries in stationary energy storage application
【24h】

Techno-economic analysis of lithium-ion and lead-acid batteries in stationary energy storage application

机译:静止储能应用中锂离子和铅酸蓄电池的技术经济分析

获取原文
获取原文并翻译 | 示例
           

摘要

Grid-connected renewable energy systems are considered a viable solution for satisfying the swiftly growing demand. Nevertheless, the intermittent nature of renewable energy sources (RESs) hinders their performance and can not be efficiently utilized, rather imposes power quality and instability problem on the grid system. To alleviate this challenge, it is common practice to integrate RESs with efficient battery energy storage technologies. Lead-acid batteries were playing the leading role utilized as stationary energy storage systems. However, currently, there are other battery technologies like lithium-ion (Li-ion), which are used in stationary storage applications though there is uncertainty in its cost-effectiveness. In this paper, a state-of-the-art simulation model and techno-economic analysis of Li-ion and lead-acid batteries integrated with Photovoltaic Grid-Connected System (PVGCS) were performed with consideration of real commercial load profiles and resource data. The Hybrid Optimization Model for Electric Renewables (HOMER) was used for the study of the techno-economic analysis. Besides, the performance of these batteries is greatly affected by the rate of charge and discharge cycling effects which gradually degrades the capacity of the battery. This effect was also investigated with Matlab using a simplified equivalent circuit model by considering a typical stationary application datasheet. The technoeconomic simulation output provided that the system with Li-ion battery resulted in a Levelized Cost of Energy (LCOE) of 0.32 (sic)/kWh compared to the system with lead-acid battery with LCOE of 0.34 (sic)/kWh. Besides, the Net Present Cost (NPC) of the system with Li-ion batteries is found to be (sic)14399 compared to the system with the lead-acid battery resulted in an NPC of (sic)15106. According to the result found, Li-ion batteries are technoeconomically more viable than lead-acid batteries under the considered specifications and application profile.
机译:电网连接的可再生能源系统被认为是满足迅速增长的需求的可行解决方案。然而,可再生能源(RESS)的间歇性质阻碍了它们的性能,不能有效地利用,而是对网格系统产生电力质量和不稳定问题。为了缓解这一挑战,常常用高效的电池能量存储技术整合罗斯。铅酸电池正在发挥用作固定储能系统的主导作用。然而,目前,还有其他电池技术,如锂离子(LI-ION),其用于固定存储应用,但在其成本效益中存在不确定性。在本文中,考虑到真实的商业负载简档和资源数据,进行了一种最先进的锂离子和铅酸蓄电池的锂离子和铅酸电池的技术经济分析。电动再生能源(HOMER)的混合优化模型用于技术经济分析研究。此外,这些电池的性能受到电荷速率和放电循环效果的影响,这逐渐降低了电池的容量。通过考虑典型的固定应用数据表,还使用简化的等效电路模型对MATLAB进行研究。技术经济仿真输出的规定,与带有0.34(SiC)/ kWh的Loce的系统相比,具有锂离子电池的系统为0.32(SiC)/ kWh的能量(LCoE)的调用成本。此外,与具有铅酸电池的系统相比,发现具有锂离子电池的系统的净现成(NPC)(SiC)14399,导致(SiC)15106的NPC。根据结果​​发现,锂离子电池在考虑的规格和应用概况下的铅酸电池技术重点是更可行的。

著录项

  • 来源
    《Journal of Energy Storage》 |2021年第8期|102748.1-102748.19|共19页
  • 作者单位

    Vrije Univ Brussels Mobil Logist & Automot Technol Res Ctr Pl Laan 2 B-1050 Brussels Belgium|Jimma Univ Jimma Inst Technol Dept Elect & Comp Engn Jimma 378 Ethiopia;

    Vrije Univ Brussels Mobil Logist & Automot Technol Res Ctr Pl Laan 2 B-1050 Brussels Belgium;

    Vrije Univ Brussels Mobil Logist & Automot Technol Res Ctr Pl Laan 2 B-1050 Brussels Belgium;

    Jimma Univ Jimma Inst Technol Dept Elect & Comp Engn Jimma 378 Ethiopia;

    Vrije Univ Brussels Mobil Logist & Automot Technol Res Ctr Pl Laan 2 B-1050 Brussels Belgium|Jimma Univ Jimma Inst Technol Dept Elect & Comp Engn Jimma 378 Ethiopia;

    Vrije Univ Brussels Mobil Logist & Automot Technol Res Ctr Pl Laan 2 B-1050 Brussels Belgium;

    Vrije Univ Brussels Mobil Logist & Automot Technol Res Ctr Pl Laan 2 B-1050 Brussels Belgium;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lithium-ion batteries; Lead-acid batteries; Techno-economic; HOMER; Renewable energy; Matlab;

    机译:锂离子电池;铅酸电池;技术经济;荷马;可再生能源;MATLAB;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号