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Model-Based Optimization of Velocity Strategy for Lightweight Electric Racing Cars

机译:基于模型的轻型电动赛车速度策略优化

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摘要

The article presents a method for optimizing driving strategies aimed at minimizing energy consumption while driving. The method was developed for the needs of an electric powered racing vehicle built for the purposes of the Shell Eco-marathon (SEM), the most famous and largest race of energy efficient vehicles. Model-based optimization was used to determine the driving strategy. The numerical model was elaborated in Simulink environment, which includes both the electric vehicle model and the environment, i.e., the race track as well as the vehicle environment and the atmospheric conditions. The vehicle model itself includes vehicle dynamic model, numerical model describing issues concerning resistance of rolling tire, resistance of the propulsion system, aerodynamic phenomena, model of the electric motor, and control system. For the purpose of identifying design and functional features of individual subassemblies and components, numerical and stand tests were carried out. The model itself was tested on the research tracks to tune the model and determine the calculation parameters. The evolutionary algorithms, which are available in the MATLAB Global Optimization Toolbox, were used for optimization. In the race conditions, the model was verified during SEM races in Rotterdam where the race vehicle scored the result consistent with the results of simulation calculations. In the following years, the experience gathered by the team gave us the vice Championship in the SEM 2016 in London.
机译:本文提出了一种优化驾驶策略的方法,旨在最大限度地减少驾驶时的能耗。该方法是针对电动赛车的需求而开发的,该电动赛车是为壳牌环保马拉松(SEM)(最著名和最大型的节能汽车竞赛)而制造的。基于模型的优化用于确定驾驶策略。在Simulink环境中详细阐述了数值模型,其中包括电动汽车模型和环境,即赛道以及车辆环境和大气条件。车辆模型本身包括车辆动力学模型,描述有关滚动轮胎的阻力,推进系统的阻力,空气动力学现象,电动机的模型和控制系统的问题的数值模型。为了确定单个子组件和组件的设计和功能特征,进行了数值测试和支架测试。在研究轨道上对模型本身进行了测试,以调整模型并确定计算参数。 MATLAB全局优化工具箱中提供的进化算法用于优化。在比赛条件下,该模型在鹿特丹的SEM比赛中得到了验证,赛车的得分与模拟计算的结果一致。在接下来的几年中,团队的经验使我们在伦敦举行的SEM 2016上获得了副冠军。

著录项

  • 来源
    《Journal of Advanced Transportation》 |2018年第3期|3614025.1-3614025.20|共20页
  • 作者单位

    Silesian Tech Univ, Inst Fundamentals Machinery Design, 18A Konarskiego St, PL-44100 Gliwice, Poland;

    Silesian Tech Univ, Inst Fundamentals Machinery Design, 18A Konarskiego St, PL-44100 Gliwice, Poland;

    Silesian Tech Univ, Inst Fundamentals Machinery Design, 18A Konarskiego St, PL-44100 Gliwice, Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 01:11:28

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