Fundamentals of Electric Vehicle Engineering

所在平台: Udemy

课程主页: https://www.udemy.com/course/fundamentals-of-electric-vehicle-engineering-1/

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课程名称:电动汽车工程基础 概述:随着世界的变化,汽车行业正以前所未有的速度采纳电动汽车系统。在过去十年中,电动汽车系统取得了显著成就,目前正朝着实现绿色运输系统的目标迈进,借助高效和可持续的能源来源。从2010年的2万辆电动汽车增长到2020年的超过700万辆,体现了电动汽车市场的快速发展。若以此增长率推测2020-2030年间的情况,未来电动汽车市场的潜力将不容小觑。 电动汽车工程需要电气、机械、汽车、功率电子、电子与通信以及计算机工程等多学科的专业知识。本课程旨在介绍电动汽车系统的基本工程知识,帮助各个专业的团队成员理解其必要性。课程内容涵盖电动汽车系统设计的基本要求、目标和相关问题,从汽车和电动汽车系统的历史入手,逐步深入到电动汽车系统的各个细节。 课程主要包括: - 电动汽车系统参数的基本计算,如所需平均电机功率、车辆续航和电池计算。 - 车辆的扭矩-速度特性分析及电动机选择以匹配这些特性。 - 驱动循环、车辆参数、动力学方程、电动机、传动系统、能源来源、不同电动车配置等的详细说明。 - MATLAB仿真模型的开发及其分析,以理解各种参数对车辆性能的影响。 - 各种能源来源的详细介绍,涵盖电池、燃料电池、超级电容器和飞轮等。 本课程解释了不同学科工程师在实现电动汽车系统性能目标方面的协同作用。课程适合任何专业的工程学生,尤其是希望未来在电动汽车行业工作的学生,也为希望开展电动汽车工程领域研究工作的研究学者提供了重要的基础知识。

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The world is changing, and the automobile industry is adopting electric vehicle systems much faster than ever before. The electric vehicle system achieved a lot in the last decade and now it is on track to fulfil the goal of a green transportation system with efficient and sustainable energy sources.The total number of electric cars worldwide had only 0.02 million in 2010 which is increased to more than 7 million in 2020. Imagine the same growth rate for the decade 2020-2030, and then one can realize the real future of the electric vehicle market worldwide.Electric Vehicle Engineering requires multidisciplinary expertise like electrical, mechanical, automobile, power electronics, electronics & communication, and computer engineers.This course is designed on fundamental engineering aspects of the electric vehicle system that must be known and understood by each team member irrespective of their branch. The main aim of this course is to explain basic requirements, goals, and issues related to electric vehicle system design.It starts with the history of the automobile and electric vehicle system and leads to every detail one needs to know about the electric vehicle system.It covers basic calculations required to find various parameters of the Electric Vehicle system like required average motor power, vehicle range, and battery calculations.It explains the torque-speed characteristic of the vehicle in detail and also covers how to select an electric motor to match the torque-speed characteristics of the vehicle.It covers detail about driving cycles, vehicle parameters, dynamic equations, electric motors, drive train, energy source, different EV configurations, and more.It also includes the development of the MATLAB simulation model and its analysis to understand the effect of various parameters on the vehicle.It includes detail about all types of energy sources like battery, fuel cell, ultracapacitor, and flywheel.This course explains the role of engineers of various disciplines to achieve a common goal in terms of performance requirements of the electric vehicle system. This course is suitable for engineering students of any branch who wish to work with electric vehicle industries in the future.This course will be helpful to research scholars who want to start their research work in the field of electric vehicle engineering.

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