A MATLAB graphical user interface for battery design and simulation; from cell test data to real-world automotive simulation

A. Fotouhi, N. Shateri, D. Auger, S. Longo, K. Propp, R. Purkayastha, Mark Wild
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引用次数: 10

Abstract

This paper describes a graphical user interface (GUI) tool designed to support cell design and development of manufacturing processes for an automotive battery application. The GUI is built using the MATLAB environment and is able to load and analyze raw test data as its input. After data processing, a cell model is fitted to the experimental data using system identification techniques. The cell model's parameters (such as open-circuit-voltage and ohmic resistance) are displayed to the user as functions of state of charge, providing a visual understanding of the cell's characteristics. The GUI is also able to simulate the performance of a full battery pack consisting of a specified number of single cells using standard driving cycles and a generic electric vehicle model. After a simulation, the battery designer is able to see how well the vehicle would be able to follow the driving cycle using the tested cells. Although the GUI is developed for an automotive application, it could be extended to other applications as well. The GUI has been designed to be easily used by non-simulation experts (i.e. battery designers or electrochemists) and it is fully automated, only requiring the user to supply the location of raw test data.
电池设计与仿真的MATLAB图形用户界面从电池测试数据到真实世界的汽车模拟
本文描述了一个图形用户界面(GUI)工具,用于支持汽车电池应用的电池设计和制造过程的开发。该GUI是使用MATLAB环境构建的,能够加载和分析原始测试数据作为其输入。数据处理后,利用系统识别技术将细胞模型拟合到实验数据中。电池模型的参数(如开路电压和欧姆电阻)作为电荷状态的函数显示给用户,提供了对电池特性的直观理解。GUI还能够使用标准驾驶循环和通用电动汽车模型模拟由指定数量的单个电池组成的完整电池组的性能。经过模拟后,电池设计人员能够看到车辆如何使用测试电池来跟随驾驶循环。虽然GUI是为汽车应用程序开发的,但它也可以扩展到其他应用程序。GUI被设计为非仿真专家(即电池设计人员或电化学人员)易于使用,并且它是完全自动化的,只需要用户提供原始测试数据的位置。
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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