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Plug-in electric vehicle batteries degradation modeling for smart grid studies: Review, assessment and conceptual framework

机译:用于智能电网研究的插电式电动汽车电池退化模型:审查,评估和概念框架

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摘要

The battery is a key component in Plug-in Electric Vehicles (PEVs) whose degradation should be considered in vehicle modeling and if the battery pack is to be used in a Vehicle to Grid (V2G) smart grid studies. Several researchers have proposed different methodologies for PEV batteries degradation modeling from various aspects. Most of the battery degradation literature consists of empirical-based studies with results extracted from experimental tests in laboratories. As such, the results have been presented in non-formulated forms and are of less effectiveness for smart grid researchers. Furthermore, the impact of battery degradation in V2G smart grid have not been examined in smart grid studies. This paper reviews and compares different battery technologies focusing on Lithium-ion batteries which dominant in today and future vehicle applications. After that the most prominent degradation models are assessed, the effects of degradation factors on battery performance are examined. The literature shows that the degradation causes can be categorized into two groups namely calendar ageing and cycling ageing. Generally, the calendar ageing is influenced by temperature, time, and state of charge, while the cycling ageing is influenced by cycle number, charge rate and depth of discharge. Finally, in this work a conceptual framework for battery degradation modeling is proposed that can be easily used in smart grid studies, without necessarily requiring a detailed understanding of fundamental electro-chemical processes. The proposed framework considers not only the battery degradation modeling, but also that of other related components in a smart grid.
机译:电池是插电式电动汽车(PEV)的关键组件,在车辆建模中以及是否要将电池组用于车辆到电网(V2G)智能电网研究中时,应考虑其退化。几位研究者从各个方面提出了用于PEV电池退化建模的不同方法。大多数电池退化文献都是基于经验的研究,其结果是从实验室的实验测试中提取的。因此,结果以非公式化形式呈现,对智能电网研究人员的有效性较低。此外,尚未在智能电网研究中检查电池退化对V2G智能电网的影响。本文回顾并比较了专注于锂离子电池的不同电池技术,这些技术在当今和未来的汽车应用中占主导地位。在评估了最突出的退化模型之后,研究了退化因素对电池性能的影响。文献表明,降解原因可分为两类:日历老化和循环老化。通常,压延老化受温度,时间和充电状态的影响,而循环老化则受循环次数,充电速率和放电深度的影响。最后,在这项工作中,提出了用于电池退化建模的概念框架,该框架可轻松用于智能电网研究中,而不必要求对基本的电化学过程有详细的了解。所提出的框架不仅考虑了电池退化模型,而且还考虑了智能电网中其他相关组件的模型。

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