首页> 外文会议>SAE World Congress Exhibition >Unified Backwards Facing and Forwards Facing Simulation of a Hybrid Electric Vehicle using MATLAB Simscape
【24h】

Unified Backwards Facing and Forwards Facing Simulation of a Hybrid Electric Vehicle using MATLAB Simscape

机译:使用MATLAB SIMSCUSCE统一朝后朝向和前进的混合电动汽车仿真

获取原文

摘要

This paper presents the implementation of a vehicle and powertrain model of the parallel hybrid electric vehicle which can be used for several purposes: as a model for estimating fuel consumption, as a model for estimating performance, and as a control model for the hybrid powertrain optimisation. The model is specified as a multi-domain physical model in MATLAB Simscape, which captures the key electrical, mechanical and thermal energy flows in the vehicles. By applying hand crafted boundary conditions, this model can be simulated either in the forwards or backwards direction, and it can easily be simplified as required to address specific control problems. Modelling in the forwards direction, the driver inputs are specified, and the vehicle response is the model output. In the backwards direction, the vehicle velocity as a function of time is the specified input, and the engine torque, and fuel consumption are the model outputs. The model represents a parallel hybrid vehicle, which is being developed in the TC48 project. The project goal is to produce a prototype of a plug-in parallel hybrid system which is integrated into existing front wheel drive powertrains with modest additional engineering, cost, volume, and mass requirements. This paper explains the motivation for the project, and presents examples of the simulations which were used to guide the design. The vehicle simulation models used to evaluate the layout options are described and discussed. Sensitivity analyses are presented which informed the design decisions. A novel use of the Simscape component of MATLAB/Simulink which allows the same model structure to be used for both forwards and backwards simulations is demonstrated. This method has the possibility for more general application, and a toolbox is being developed which assists the generation of mathematical models of this type.
机译:本文提出了一种车辆和并联混合动力电动车辆,其可用于多种用途的动力系模型的实现:作为估计的燃料消耗,作为估计性能的模型的模型,和作为用于混合动力系的优化的控制模型。该模型被指定为在MATLAB的Simscape,其捕获在车辆钥匙的电气,机械和热能流动的多域物理模型。通过施加手工制作的边界条件,该模型可无论是在向前或向后方向的模拟,并根据需要地址特定的控制的问题可以容易地简化。在向前方向上建模,驾驶员输入被指定,并且车辆响应是模型输出。在向后方向,车辆速度作为时间的函数是指定的输入,和发动机扭矩,和燃料消耗是模型输出。该模型代表并联混合动力车辆,其在TC48项目正在开发中。该项目的目标是生产一种原型插件并联式混合动力系统,该系统被集成到具有适度额外的工程,成本,体积,质量和要求现有前轮驱动动力系的。本文阐述了该项目的积极性,并提出了其用于指导设计模拟的例子。用于评估布局选项车辆仿真模型描述和讨论。敏感性分析给出该通知的设计决策。要使用的新用途MATLAB / Simulink中的的Simscape组分,其允许同样的模型结构,用于向前和向后仿真证明。该方法具有更普遍的应用可能性,工具箱被开发,这有助于这种类型的数学模型的产生。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号