Automatic Conversion of a 3D Thermal Model of a Battery Cell into a 1D Lumped-Element Network : Paper for special session 8 - Multi-level Models for Simulation of Electrified Vehicles

Josep Salvador-Iborra, Jürgen Schneider, R. Tatschl
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引用次数: 1

Abstract

As simulation of complex systems gets closer to reality, model-based development offers the opportunity to virtualize an increasing number of powertrain design and testing tasks. Many tasks are best dealt with using a combination of 3D and 1D modeling. To achieve this, one efficient technique is the conversion of high-fidelity 3D models into more flexible 1D models. This paper presents a novel automated workflow that allows to create a 1D lumped-element network using data from a 3D thermal simulation as input. Data collection is accomplished by an embedded algorithm that emulates the steps an expert would take to derive an equivalent 1D model. Generation of the lumped-element network using the collected data is also automatic. The method is tested and validated using a model of a pouch cell used in automotive batteries. Validation studies show very good agreement between the results of the original 3D model and the equivalent 1D model. Equivalence is maintained even when the model is extrapolated from ⅕ to 4 times the parametrization thermal load. This outcome encourages further development of the tool and application to more complex systems.
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电池单元三维热模型到一维集总元网络的自动转换:专题会议论文8 -电动汽车仿真的多级模型
随着复杂系统的仿真越来越接近现实,基于模型的开发为越来越多的动力总成设计和测试任务的虚拟化提供了机会。许多任务最好使用3D和1D建模的组合来处理。为了实现这一目标,一种有效的技术是将高保真的3D模型转换为更灵活的1D模型。本文提出了一种新颖的自动化工作流程,允许使用3D热模拟数据作为输入创建一维集总元网络。数据收集由嵌入式算法完成,该算法模拟专家推导等效一维模型的步骤。利用收集到的数据自动生成集总元网络。使用汽车电池中的袋状电池模型对该方法进行了测试和验证。验证研究表明,原始三维模型的结果与等效一维模型的结果非常吻合。即使当模型从参数化热负荷的1 / 2到4倍外推时,也保持等效性。这个结果鼓励进一步开发工具和应用程序到更复杂的系统。
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