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Modeling, parameterization, and benchmarking of a lithium ion electric bicycle battery

机译:锂离子电动自行车电池的建模,参数化和基准测试

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A lithium-ion battery from an electric bicycle conversion kit is tested and modeled using electrochemical impedance spectroscopy, and the hybrid pulse power characterization test (HPPC). Equivalent circuit model parameterizations are obtained from both time and frequency domain fitting and compared. Parameterization methods are described and a novel quadratic programmed-based two stage parameter fitting algorithm is presented to process and generate model parameters. Experimental data is applied to the proposed algorithm to assess fitting performance. The battery model is validated by real-life riding cycles. Additional electric bicycle benchmarking tests are performed to assess real-world battery performance under a variety of riding conditions and at different assistance levels. The brief correlation between tiredness and assistance levels is investigated.
机译:使用电化学阻抗谱和混合脉冲功率特性测试(HPPC)对电动自行车转换套件中的锂离子电池进行了测试和建模。从时域和频域拟合中获得等效电路模型参数化并进行比较。描述了参数化方法,并提出了一种新颖的基于二次编程的两阶段参数拟合算法来处理和生成模型参数。实验数据被应用于所提出的算法,以评估拟合性能。电池模型已通过实际骑行周期验证。还要执行其他电动自行车基准测试,以评估各种骑行条件和不同辅助级别下的实际电池性能。研究了疲劳程度与辅助水平之间的简要相关性。

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