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Performance Evaluation of Modularized Global Equalization System for Lithium-Ion Battery Packs

机译:锂离子电池组模块化全球均衡系统的性能评估

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Battery management system has attracted mounting research attention recently, within which cell equalization plays a key role. Although many research and practices have been devoted to developing various structures of cell equalizers, there are still substantial opportunities for performance improvement yet to investigate. In particular, mathematical modeling and systematic analysis of equalizer systems are limited. In this paper, the performance analysis of the modularized global equalizer system for Lithium-ion battery cell equalization is conducted analytically. Specifically, a mathematical model is developed to emulate the equalization dynamics by considering both charging/discharging and energy loss. Analytical formulas are derived to evaluate the performance of the global equalizer. The introduced model is also compared with the state-of-the-art structures in terms of equalization speed and energy loss. Numerical studies show that the modularized global equalization outperforms others by its substantial reduction on energy loss with similar equalization performance and much less equalizers. In addition, a module segmentation guide is provided to facilitate the equalization system design.
机译:电池管理系统最近引起了越来越多的研究关注,其中电池均衡扮演着关键角色。尽管许多研究和实践致力于开发单元均衡器的各种结构,但是仍有大量的性能改进机会尚待研究。特别是,均衡器系统的数学建模和系统分析受到限制。本文对用于锂离子电池单元均衡的模块化全局均衡器系统的性能进行了分析。具体而言,通过考虑充电/放电和能量损耗,开发了数学模型来模拟均衡动态。导出分析公式以评估全局均衡器的性能。引入的模型在均衡速度和能量损失方面也与最新结构进行了比较。数值研究表明,模块化的全局均衡通过显着降低能量损耗,具有相似的均衡性能和更少的均衡器,从而优于其他同类产品。另外,提供了模块分段指南以促进均衡系统设计。

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