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Performance Degradation Modelling and Techno-Economic Analysis of Lithium-Ion Battery Energy Storage Systems

机译:锂离子电池储能系统的性能退化建模与技术经济分析

摘要

Transmission system operators and distribution system operators are experiencing new challenges in terms of reliability, power quality, and cost efficiency. Although the potential of energy storages to face those challenges is recognized, the economic implications are still obscure, which introduce the risk into the business models.This thesis aims to investigate the technical and economic value indicators of lithium-ion battery energy storage systems (BESS) in grid-scale applications. In order to do that, a comprehensive performance lithium-ion BESS model with degradation effects estimation is developed. The model development process implies literature review on lifetime modelling, use, and modification of previous study progress, building the additional system parts and integrating it into a complete tool. The constructed model is capable of describing the dynamic behavior of the BESS voltage, state of charge, temperature and capacity loss.Five control strategies for BESS unit providing primary frequency regulation are implemented, in addition to the model. The questions related to BESS dimensioning and the end of life (EoL) criterion are addressed. Simulations are performed with one-month real frequency data acquired from Fingrid. The lifetime and cost-benefit analysis of the simulation results allow to compare and determine the preferable control strategy. Finally, the study performs the sensitivity analysis of economic profitability with variable size, EoL and system price. The research reports that BESS can be profitable in certain cases and presents the recommendations.
机译:传输系统运营商和配电系统运营商在可靠性,电能质量和成本效率方面都面临着新的挑战。尽管人们已经认识到储能技术面临的挑战的潜力,但其经济意义仍然模糊不清,这将风险引入了业务模型中。本文旨在研究锂离子电池储能系统(BESS)的技术和经济价值指标)在网格规模的应用中。为此,开发了具有退化效应估计的综合性能锂离子BESS模型。模型开发过程意味着对生命周期建模,使用和先前研究进展的修改进行文献综述,构建其他系统部分并将其集成到完整的工具中。所构建的模型能够描述BESS电压,充电状态,温度和容量损失的动态行为。除了该模型之外,还对提供基本频率调节的BESS单元实施了五种控制策略。解决了与BESS尺寸确定和寿命终止(EoL)标准有关的问题。使用从Fingrid获得的一个月真实频率数据进行仿真。仿真结果的寿命和成本效益分析可以比较和确定最佳的控制策略。最后,本研究对可变规模,EoL和系统价格的经济盈利能力进行了敏感性分析。该研究报告指出,BESS在某些情况下可以盈利,并提出了建议。

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    Ignatev Eduard;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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