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Optimal sizing and sensitivity analysis of a battery-supercapacitor energy storage system for electric vehicles

机译:电动汽车电池超级电容器储能系统的最佳施胶和灵敏度分析

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摘要

This paper presents a sizing method with sensitivity analysis for battery-supercapacitor hybrid energy storage systems (HESSs) to minimize vehicle-lifetime costs. An optimization framework is proposed to solve joint energy management-sizing optimization. Sensitivity analysis is performed using eight parameters of the vehicle, HESS system and components as sensitive factors. We explain why HESS sizing is sensitive to each factor by discussing the change of optimal HESS size and costs with varying factor values. The relative importance of each factor in practical engineering is quantified and compared. Results show that battery degradation accounts for around 89% of HESS costs; among eight sensitive factors, vehicle driving range has the biggest impact on HESS costs with a calculated impact degree of 1.243. By analyzing comprehensive factors in optimization of HESS sizing, it is expected to provide general a sizing guide applicable to various application scenarios of HESS in electric vehicles.(c) 2021 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种具有敏感性分析的尺寸方法,用于电池超级电容器混合能量存储系统(HESSS),以最大限度地减少车辆寿命成本。提出了一种优化框架来解决关节能量管理尺寸优化。使用车辆,HESS系统和组件的八个参数进行敏感性分析作为敏感因素。我们解释为什么Hess Size通过讨论最佳Hess尺寸的变化和具有不同因子值的变化来敏感每个因素。量化和比较了每个因素在实际工程中的相对重要性。结果表明,电池劣化约占HESS成本的89%;在八个敏感因素中,车辆驾驶范围对HESS成本的影响最大,计算出的1.243的影响程度。通过分析HESS尺寸优化的综合因素,预计将提供一般的规模指南,适用于电动汽车中HESS的各种应用场景。(c)2021 elestvier有限公司保留所有权利。

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