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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Accelerated energy capacity measurement of lithium-ion cells to support future circular economy strategies for electric vehicles
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Accelerated energy capacity measurement of lithium-ion cells to support future circular economy strategies for electric vehicles

机译:加速锂离子电池的能量测量,以支持未来的电动汽车循环经济策略

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Within the academic and industrial communities there has been an increasing desire to better understand the sustainability of producing vehicles that contain embedded electrochemical energy storage. Underpinning a number of studies that evaluate different circular economy strategies for the electric vehicle (EV) or Hybrid electric vehicle (HET) battery system are implicit assumptions about the retained capacity or State of Health (SOH) of the battery. International standards and best-practice guides exist that address the performance evaluation of both EV and HEV battery systems. However, a common theme is that the test duration can be excessive and last for a number of hours. The aim of this research is to assess whether energy capacity measurements of Li-ion cells can be accelerated; reducing the test duration to a value that may facilitate further EOL options. Experimental results are presented that highlight it is possible to significantly reduce the duration of the battery characterization test by 70-90% while still retaining levels of measurement accuracy for retained energy capacity in the order of 1% for cell temperatures equal to 25 degrees C. Even at elevated temperatures of 40 C, the peak measurement error was found to be only 3%. Based on these experimental results, a simple cost function is formulated to highlight the flexibility of the proposed test framework. This approach would allow different organizations to prioritize the relative importance of test accuracy verses experimental test time when grading used Li-ion cells for different end-of-life (EOL) applications.
机译:在学术界和工业界中,人们越来越渴望更好地了解生产包含嵌入式电化学能量存储装置的车辆的可持续性。评估电动汽车(EV)或混合动力电动汽车(HET)电池系统的不同循环经济策略的大量研究的基础是关于电池的保留容量或健康状态(SOH)的隐含假设。存在有关电动汽车和混合动力汽车电池系统性能评估的国际标准和最佳实践指南。但是,一个共同的主题是测试持续时间可能会过长并持续数小时。这项研究的目的是评估是否可以加速锂离子电池的能量容量测量。将测试持续时间减少到可以促进进一步EOL选择的值。提出的实验结果表明,对于等于25摄氏度的电池温度,可以将电池表征测试的持续时间显着减少70-90%,同时仍将保留的能量容量的测量精度保持在大约1%的水平。即使在40°C的高温下,峰值测量误差也仅为3%。根据这些实验结果,制定了一个简单的成本函数,以突出提出的测试框架的灵活性。当为不同的寿命终止(EOL)应用对用过的锂离子电池进行分级时,这种方法将允许不同的组织将测试准确性相对于实验测试时间的相对重要性放在优先位置。

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