Hands-On Application Of Vehicle Performance Using MATLAB

所在平台: Udemy

课程主页: https://www.udemy.com/course/hands-on-application-of-vehicle-performance-using-matlab/

课程评论:没有评论

第一个写评论        关注课程

课程简介

课程名称:使用MATLAB进行车辆性能的实践应用 课程概述:本课程强调实践是理解理论的最佳方式,采用基于实例的教学方法,大部分讲座通过需要解决的问题进行阐述,旨在帮助学生快速将所学知识应用于不同的案例中。 学习内容: 1. 理解和分析影响车辆行驶的各种阻力,建立车辆的数学阻力模型。 2. 分析与车辆性能相关的车辆动态。 3. 研究并生成车辆发动机的特性曲线,理解发动机/电动机扭矩如何帮助车辆克服道路阻力。 4. 理解阻力对车辆动力需求的影响,并在MATLAB中建模道路阻力。 5. 理解并计算车辆的性能特性(例如:最大车速、加速时间、最大坡度、电动车续航)。 6. 掌握在特定驾驶条件下预测车辆性能的技巧。 7. 理解不同参数对车辆性能的影响。 8. 使用动态特性图模拟车辆动态,并确定车辆功率因数。 9. 分析影响电动车动力性能的因素。 10. 学习如何对电动车在恒定速度下进行续航模拟。 11. 基于动力特性匹配的模拟分析电动巴士(BEV)的性能。 12. 掌握根据车辆阻力需求计算和确定电动机功率的知识。 13. 学习如何利用MATLAB模拟进行扩展范围电动车(E-REV)的传动系统匹配。 14. 学习如何选择符合设计电动车要求的电动机(参数匹配)。 15. 掌握进行电池参数匹配以满足设计电动车所需要求的技巧。 16. 知道如何对燃料电池电动车进行驱动系统匹配模拟。 17. 建立燃料电池匹配的数学模型,并利用MATLAB匹配燃料电池参数。 18. 了解电动车的循环状态——根据NEDC驾驶循环进行续航模拟。 19. 在NEDC驾驶循环条件下分析和模拟电动车的续航。 20. 研究影响电动车续航的因素。 21. 基于条件方法模拟电动车传动系统以匹配NEDC循环要求。 22. 学习如何在NEDC工作条件下匹配驱动电动机参数和动力电池。 通过本课程,学生将获得深厚的车辆性能分析和模拟技能,为今后在车辆工程领域的进一步研究和实践奠定坚实基础。

课程评论(0条)

课程详情

It is said that the best way to understand a theory is to put it into practice.This course is an example-based course in which most of the lectures are given as problems that need to be solved through a proper understanding of the theoretical part. Thus, the student will be able to apply what he learns at a fast rate from one example to another. What you are going to learn from this course:1-Understand and analyze the different resisting forces that affect the vehicle while driving and build the mathematical resistance model of the vehicle.2-Analyze Vehicle dynamics that is related to vehicle performance.3-Study and generate the characteristic curves of a vehicle's engine and understand how the engine/motor torque is used by the vehicle to overcome road resistances.4-Understand the influence of Resisting forces on vehicle Power requirements and Model the road resistances in MATLAB.5-Understand and calculate the performance characteristics of a vehicle ( eg. max. vehicle speed, Acceleration time, Max Grade, Electric vehicle Range).6-Grab the Know-how of Predicting vehicle performance under certain required driving conditions.7-Understand how different parameters influence vehicle performance.8-Simulation of Vehicle Dynamics using the dynamic characteristic graph and determining vehicle power factor.9-How to Analyze the factors affecting the power performance of an electric vehicle.10-Learn how to Perform a Driving range simulation for an electric vehicle at a constant speed.11-Analyzing the performance of (BEV, Battery-powered electric vehicle) based on power characteristics matching simulation of the vehicle transmission system.12-Grab the Know-how of calculating and determining the electric motor power according to the vehicle resistance requirement.13-Learn how to perform transmission system matching with MATLAB simulation for Extended-range Electric Vehicles (E-REV).14-Learn how to select a motor that matches your designed electric vehicle requirements ( parameter matching ).15-Grab the Know-how of performing a battery parameter matching to achieve the desired requirement for your designed electric vehicle.16-Know how to Perform a Driving system matching simulation of a fuel cell electric vehicle.17-Establishment of fuel cell matching mathematical model and Matching fuel cell parameters with MATLAB.18-Know about cycle state of an electric vehicle -Driving range simulation according to NEDC driving cycle.19-Analysis and simulation of the driving range of the electric vehicle under the NEDC driving cycle condition.20-Study of factors affecting the driving range of an electric vehicle.21-Simulation of Electric vehicle transmission based on a conditional method to match NEDC cycle requirements.22-learn how to match the driving motor parameters, and power battery based on the NEDC working condition.

课程标签

0人关注该课程

主题相关的课程