Advanced Electro-Thermal Modeling of Lithium-Ion Battery System for Hybrid Electric Vehicle Applications

C. Mi, Ben Q. Li, D. Buck, N. Ota
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引用次数: 79

Abstract

The successful implementation and commercialization of hybrid electric vehicles (HEV) rely largely on energy storage systems. Lithium-ion batteries offer potential advantages in energy density, power density, and cost for this purpose. One of the challenges imposed by lithium-ion battery is the thermal management. The best operating temperature of lithium-ion battery is from -10degC to 50degC. An effective thermal management system is critical to maintain the health and life span of the battery. A good thermal management system starts with accurate prediction of the thermal conditions of the battery. This paper is aimed to evaluate the thermal management system of a lithium-ion battery pack designed for HEV applications, including estimating the thermal loss of the battery pack based on electric characteristics and experiments; predicting the temperature rise of the battery pack based on the test results of a single cell, and modeling the temperature gradients of the battery pack under different operating conditions.
混合动力汽车用锂离子电池系统的先进电热建模
混合动力汽车(HEV)的成功实施和商业化在很大程度上依赖于储能系统。锂离子电池在能量密度、功率密度和成本方面具有潜在的优势。锂离子电池面临的挑战之一是热管理。锂离子电池的最佳工作温度为-10℃~ 50℃。一个有效的热管理系统对保持电池的健康和寿命至关重要。一个好的热管理系统首先要对电池的热状态进行准确的预测。本文旨在对混合动力锂离子电池组热管理系统进行评估,包括基于电学特性和实验估算电池组的热损失;根据单个电芯的测试结果预测电池组的温升,并对不同工况下电池组的温度梯度进行建模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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