NMC锂电池二次寿命老化实验分析

M. Ceraolo, R. Giglioli, G. Lutzemberger, Mohadeseh Meskinfam Langroudi, D. Poli, N. Andrenacci, M. Pasquali
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引用次数: 8

摘要

目前,电力系统正面临着与可再生能源整合相关的新挑战,越来越多地与储能系统相结合。这些技术的应用非常有前景,尽管它需要复杂的控制架构,以成功地平衡可再生能源的间歇性和不可预测性,并为电网提供新的服务。存储状态估计器的存在是绝对需要的,以正确识别存储性能和当前条件,在存储能量,老化或可能的故障方面;这对于评估电池在第一次或第二次使用寿命期间的真正可利用性至关重要。本文特别关注老化机制,描述和比较了三种可能的模型及其部署过程。对各技术在实现的灵活性、测定老化的准确性、使用的便捷性等方面进行了深入的分析和比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Analysis of NMC Lithium Cells Aging for Second Life Applications
Nowadays the electric power system is facing new challenges related to the integration of renewable sources, more and more frequently combined with energy storage systems. The use of these technologies is very promising, although it requires sophisticated control architectures in order to successfully balance the intermittence and unpredictability of renewables, and provide the power grid with new services. The presence of a storage state estimator is absolutely required to correctly identify the storage performance and present conditions, in terms of stored energy, aging or possible failures; this is crucial to assess the real exploitability of the battery, both during its first or second life application. This paper focuses in particular on aging mechanisms, describing and comparing three possible models and their deployment procedures. Flexibility of implementation, accuracy in aging determination, and ease of use of each technique have been deeply analysed and compared.
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