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A hybrid battery model capable of capturing dynamic circuit characteristics and nonlinear capacity effects

机译:一种能够捕获动态电路特性和非线性容量效应的混合电池模型

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A high-fidelity battery model capable of accurately predicting battery performance is required for proper design and operation of battery-powered systems. However, the existing battery models have at least one of the following drawbacks: 1) requiring intensive computation due to high complexity, 2) not applicable for electrical circuit design and simulation, and 3) not capable of accurately capturing the state of charge (SOC) and predicting runtime of the battery due to neglecting the nonlinear capacity effects. This paper proposes a novel hybrid battery model, which takes the advantages of an electrical circuit battery model to accurately predicting the dynamic circuit characteristics of the battery and an analytical battery model to capturing the nonlinear capacity effects for accurate SOC tracking and runtime prediction of the battery. The proposed battery model is validated by simulation and experimental studies for single-cell and multicell polymer lithium-ion batteries as well as for a lead-acid battery. The proposed model is applicable to other types and sizes of electrochemical battery cells. The proposed battery model is computational effective for simulation, design, and real-time management of battery-powered systems.
机译:需要精确预测电池性能的高保真电池型号,以便适当的设计和操作电池供电系统。然而,现有电池模型具有以下缺点中的至少一个:1)由于高复杂性,2)不适用于电路设计和仿真,3)不适用于准确地捕获充电状态(SOC )通过忽略非线性容量效应,预测电池的运行时间。本文提出了一种新型混合电池模型,它采用电路电池模型的优势,以准确地预测电池的动态电路特性和分析电池模型,以捕获电池准确的SOC跟踪和运行时预测的非线性容量效应。所提出的电池模型是通过用于单细胞和多电池聚合物锂离子电池以及铅酸电池的模拟和实验研究验证。所提出的模型适用于其他类型和尺寸的电化学电池单元。所提出的电池模型是电池供电系统的仿真,设计和实时管理的计算有效性。

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