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Electric Vehicle Li-Ion Battery Evaluation Based on Internal Resistance Analysis

机译:基于内阻分析的电动汽车锂离子电池评估

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摘要

Internal resistance (IR) is considered one of the most important parameters of a battery, as it is used to evaluate the battery's power performance, energy efficiency, aging mechanisms or equivalent circuit modeling. In addition, in electric vehicle (EV) applications, the IR provides essential information related with regenerative braking capabilities, dynamic charge and discharge efficiencies, or physical degradation of the battery. This work aims to provide the insight details of the IR of a battery under several testing conditions and methods, to present its practical implications on EVs. The experimental tests are carried out on lithium iron phosphate (LFP) batteries ranging from 16 Ah to 100 Ah, suitable for its use in EVs. We study the IR dependency with battery's capacity, SOC and the charge/discharge rate; also, the convenience of using a certain IR measurement method is evaluated. Furthermore, the main results are put into context for practical EV applications, to enhance the design of battery management systems (BMS) in relation with the system's energy efficiency.
机译:内部电阻(IR)被认为是电池最重要的参数之一,因为它可用于评估电池的电源性能,能效,老化机制或等效电路模型。此外,在电动汽车(EV)应用中,IR提供了与再生制动能力,动态充电和放电效率或电池的物理退化有关的基本信息。这项工作旨在提供在几种测试条件和方法下电池IR的详细见解,以展示其对EV的实际意义。在适用于电动汽车的16 Ah至100 Ah的磷酸铁锂(LFP)电池上进行了实验测试。我们研究IR对电池容量,SOC和充电/放电速率的依赖性;此外,还评估了使用某种红外测量方法的便利性。此外,将主要结果结合实际电动汽车应用,以增强与系统能效相关的电池管理系统(BMS)的设计。

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