Analysis of Lithium-ion Batteries through Electrochemical Impedance Spectroscopy Modeling

Vamsee Krishna Teki, Jahnavi Kasi, Saiprakash Chidurala, Subhashree Priyadarshini, S. Joga, M. K. Maharana, C. Panigrahi
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Abstract

Electrochemical impedance spectroscopy (EIS) is a very effective methodology employed in the evaluation of performance and degradation mechanisms associated with lithium-ion batteries. In order to comprehend the complex electrochemical processes taking place within these energy storage devices, reliable and effective diagnostic tools are required due to the constant improvements in battery technology. EIS methodology has gained prominence as a very effective non-destructive method for examining the electrochemical characteristics of batteries. This technique offers significant contributions by providing useful insights into the internal operations of batteries. The main objective of this study is to create an electrical equivalent circuit model of a lithium-ion battery based on physics, and then use EIS to comprehend the electrical behavior and impedance of the battery to evaluate its performance under various operating scenarios. We seek to identify the critical elements influencing the battery's capacity, performance, and lifespan by capturing the intricate interaction of EIS. The results of this research are going to enhance the understanding of battery behavior and supporting the design as a more reliable and efficient energy storage systems for a wide range of applications, from portable electronic devices to electric vehicles and renewable energy integration.
通过电化学阻抗光谱建模分析锂离子电池
电化学阻抗光谱(EIS)是评估锂离子电池性能和降解机制的一种非常有效的方法。由于电池技术的不断改进,为了理解这些储能设备中发生的复杂电化学过程,需要可靠有效的诊断工具。EIS 方法作为检查电池电化学特性的一种非常有效的非破坏性方法,已经得到了广泛应用。这项技术为深入了解电池的内部运作做出了重要贡献。本研究的主要目的是根据物理学原理创建锂离子电池的电气等效电路模型,然后使用 EIS 理解电池的电气行为和阻抗,以评估其在各种操作情况下的性能。我们试图通过捕捉 EIS 错综复杂的相互作用,找出影响电池容量、性能和寿命的关键因素。这项研究的成果将加深人们对电池行为的理解,并支持设计出更可靠、更高效的储能系统,广泛应用于便携式电子设备、电动汽车和可再生能源集成等领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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