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Émeric FORTIN and Virginie BOUTUEIL

The purpose of Electric Vehicles and Mobility is to help you, whatever your profile, your training or your country, find your own answers to questions such as:

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The purpose of Electric Vehicles and Mobility is to help you, whatever your profile, your training or your country, find your own answers to questions such as:

- Will electric vehicles be the last to be allowed in megalopolises in the 21st century?

- Does the environmental gain from vehicle electrification justify heavy investment in charging infrastructure?

- Are electric vehicles only for wealthy people in developed countries?

This course will allow you to acquire elements from engineering science, sociology, environmental science, political science, economics, management science, in order to evaluate, analyze and implement the diffusion of electric vehicles where their use is relevant.

This MOOC is the English version of Mobilités et véhicules électriques; in the lecture videos, the teachers speak in French, nevertheless their presentation is in English and English subtitles are available.

Groupe Renault and ParisTech schools have been working together for almost 15 years on topics related to sustainable mobility. Together, they created two Master programs (Transport and Sustainable Development in 2004, Mobility and Electric Vehicles in 2010) and the Sustainable Mobility Institute Renault-ParisTech in 2009, to support ongoing changes. Electric Vehicles and Mobility is the result of this shared history and was developed from a course delivered within the Master Mobility and Electric Vehicles, led by Arts et Métiers ParisTech in partnership with Ensta ParisTech, Mines ParisTech and École des Ponts ParisTech.

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What's inside

Syllabus

Welcome

A few words about the course and how it works.

We kick off this course with a video presentation of Electric Vehicles and Mobility. We then detail the course overview and give the syllabus, explain the genesis of this MOOC: the partnership between École des Ponts ParisTech and Groupe Renault Corporate Foundation. Finally, we introduce the members of the technical, educational and scientific team.

The second section gives you the floor: you can introduce yourself to other learners through the forum.

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Chapter 1 - Understand Mobility and its evolutions

In this first chapter we will focus on mobility, we will characterize it according to urban forms and lifestyles. Then, we will study more specifically electric mobility and its evolution over time, which will allow us to analyze the changes induced by the electric vehicle on the mobility system.

In this chapter, each “class” (video Lecture) is preceded by a video More on method that defines a tool or concept used in the lecture and is followed by a video Do you know that? which widens the horizon of the course or enlights it from a particular angle.

Finally, you will be able to test your understanding in the following section devoted to the assessment of the week in a graded quiz (some single-answer questions, some multiple-answer questions). This evaluation concerns only the videos Lecture and is required to obtain the certificate.

Week 1 Assessment
Chapter 2 – Electric Mobility and Environmental Impact Reduction

In this chapter, we will study the issues of climate change and then conduct a prospective analysis of the evolution of greenhouse gases emissions throughout the 21st century.
We will then examine the role of transport in terms of local air pollution and noise.
To determine the environmental performance of different types of vehicles, we will present life-cycle analysis and then mobilize this method to compare the performance of thermal and electric vehicles in terms of preservation of the local and global environment.

The chapter consists of 6 videos Lecture and one More on method to define what life-cycle analysis is. It is supplemented by an interview of an expert from Groupe Renault to deal specifically with the subject of batteries from the point of view of their impact on the environment.

The evaluation of this chapter, in the form of a graded quiz, is in the following section. This evaluation concerns only the videos Lecture and is required to obtain the certificate.

Week 2 Assessment
Chapter 3 – Economic Analysis

We will use in this chapter the economic analysis to shed light on the choice between thermal and electric car.

After presenting a few tools and concepts of economic analysis in the video More on method, we will use this analytical framework to evaluate the costs and benefits associated with the electrification of the fleet, from the point of view of the buyers as well as that of the producer, taking into account the cost of batteries and charging infrastructure, but also the environmental gains and tax revenue changes for the State.
Then we will discuss the macroeconomic issues of the electric vehicle before looking at the demand and potential demand for electric vehicles at the micro level.

The evaluation of this chapter, in the form of a graded quiz, is in the following section. This evaluation concerns only the videos Lecture and is required to obtain the certificate.

Week 3 Assessment
Chapter 4 – Electric Mobility and Infrastructures: Technical and Economic Dimensions

Although electric vehicles run on the same roads as thermal vehicles, they require some specific infrastructures. We will discuss here the technical and economic dimensions of these infrastructures in France, in Europe and worldwide. This analysis will lead us to take an interest in the various business models of the electric vehicle.

The course will be completed by a video More on method explaining the balance of supply and demand on electricity networks.

This chapter also includes two Do you know that?, one on the charging stations, the other on electricity storage, as well as interviews of experts from Groupe Renault to complete our knowledge of infrastructure.

As with all chapters, you will have the opportunity in the next session to test your understanding of the material through a quiz. This evaluation concerns only the videos Lecture and is required to obtain the certificate.

Week 4 Assessment
Chapter 5 – Electric Mobility Today

So far, we have discussed environmental issues, the macro and microeconomic effects of electric mobility, infrastructure needs of the electric vehicle and various business models associated with it. We can now look at electric vehicle markets.

In this chapter, we will first draw up an inventory of electric vehicle markets in France, in Europe and worldwide. Then, we will study the supporting public policies that could accompany the take-off of these markets at the French, European and global levels.

This chapter also includes three videos Do you know that? that will improve our knowledge of the different types of electric vehicles.

The graded assessment for chapters 5 and 6 will be found in the section following chapter 6.

Chapter 6 - Prospective: The Road to Electrification

In this chapter we will explore how the electric vehicle may be deployed over the course the 21st century. To do this, we will explicitly use a prospective approach aimed at exploring the future rather than predicting it.

We will begin by decomposing the main instruments to reduce the environmental impacts of transport through the ASIF (Activity Structure Intensity Fuel) approach, then study the crucial issue of the deployment of charging infrastructures. Finally, we will examine the role of hybridization as a transition technology to the electric vehicle.

The course is followed by an interview of an expert from AVERE-France to broaden our point of view on hybridization and to discover advances in battery life.

You will find in the following session the graded assessment for both chapter 5 and 6. This evaluation concerns only the videos Lecture and is required to obtain the certificate.

Week 5 Assessment
Chapter 7 – Electric Mobility, Connected Mobility, Autonomous Mobility

In this chapter we will explore how the deployment of the electric vehicle is combined with other ongoing developments in the field of mobility, particularly in connection with the digital transformation of mobility systems.

We will begin with a discussion of the ongoing development of shared mobility services and the strengths and limitations of electric vehicles as regards their use in such services. We will then discuss the evolution of vehicle connectivity and explore the opportunities that it presents for the deployment of the electric vehicle. We will clarify the distinction among the different levels of vehicle automation through a video Do you know that?.

The course is enriched by an interview of an expert from Groupe Renault who discusses various examples of experiments with automated electric vehicles.

The graded assessment for chapters 7 and 8 will be found in the section following chapter 8.

Chapter 8 - Electric Mobility for All: Utopia or Obviousness

Introducing this MOOC, we asked whether electric vehicle is only for rich people in 'the North'. This chapter explicitly aims to help you to build your answers to this question. It will first discuss the possible diffusion of the electric vehicle in the Bottom-Of-Pyramid markets, that is to say the poorest (though, unfortunately, most numerous) population categories. It will then discuss the possibility for the countries in 'the South' to go straight to electric mobility, without going through the same historical development of thermal mobility as the one that countries in the North have experienced. We will therefore analyze the conditions of a leapfrogging in the field of mobility like that which has been operated in the telecommunications field where the cellular phone has been deployed in countries that have never deployed an extensive wired network.

A last interview of an expert from Groupe Renault will conclude this course on a discussion of the business model of the electric vehicle that would allow mobility for all.

Finally, you will find the graded assessment for both chapter 7 and 8 in the following section. This evaluation concerns only the videos Lecture and is required to obtain the certificate.

Week 6 Assessment
Conclusion

It's time to conclude!

Good to know

Know what's good
, what to watch for
, and possible dealbreakers
Introduces beginners to concepts necessary for understanding and discussing electric mobility
Examines environmental impacts of transport, exploring local air pollution, noise, and greenhouse gases emission
Explores essential economic concepts and uses them to evaluate the costs and benefits of electric mobility
Emphasizes the technical and economic aspects of electric vehicle infrastructures
Surveys current electric vehicle markets worldwide and discusses supporting public policies
Provides a clear vision for an approach to developing a prospective framework for the future of electrified transportation

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Save Electric Vehicles and Mobility to your list so you can find it easily later:
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Reviews summary

Electric vehicles and the future of mobility

Learners say this course discusses the environmental impact of transportation, the history of electric vehicles, and the prospects for EV mobility. It takes a broad view, covering topics like charging infrastructure, government policy, and the role of electric vehicles in the future of transportation. Students are largely positive about the course, citing its informative content and engaging assignments. Some note that the course is somewhat outdated, and a few complain about the difficult exams.
Very useful & Nice Information
"Very useful & Nice Information"
"Very interesting and informative sessions"
"T​his was knowledge packed and interesting. I learnt a lot."
Amazing course, gives a full view of the Electric Vehicles
"Amazing course, gives a full view of the Electric Vehicles"
"Excellent course. Provide deep insights into EVs and their future."
"Gives an optimal outlook for mobilization of EV's"
In depth analysis and excellent study material
"Indepth analysis and excellent study material"
"Very rich content"
"It's really a great journey of knowledge with you. Thank You."
Good content but by 2021 becoming a little dated
"Good content but by 2021 becoming a little dated"
"Very informative but Language translation was the most difficult to understand"
"Very Powerfull"
Difficult exams
"Difficult exams"
"the course was fine but the time between the failed quizzes was too long so i should wait 1 week to resubmit my failed quizzes."
"The course is very interesting & upgrades knowledge about Electric vehicles & aware about it's need in near Future"

Activities

Be better prepared before your course. Deepen your understanding during and after it. Supplement your coursework and achieve mastery of the topics covered in Electric Vehicles and Mobility with these activities:
Read 'Electric Vehicle Technology Explained'
This book provides a comprehensive overview of electric vehicle technology, including the history, design, and operation of electric vehicles. Reading this book will help you build a strong foundation in the subject matter covered in this course.
Show steps
  • Read the book's introduction and first chapter.
  • Read the remaining chapters of the book, focusing on the sections that cover topics relevant to the course.
  • Take notes on the key concepts and ideas presented in the book.
Review Calculus
Prep your math toolkit with a review of Calculus before the course begins
Browse courses on Calculus
Show steps
  • Revisit differentiation and integration techniques
  • Practice solving basic and applied Calculus problems
  • Optional: Explore online resources like Khan Academy or Brilliant for additional practice
Review Electric Vehicle (EV) Technology
Reviewing the basics of EV technology will help you better understand the course material.
Show steps
  • Read through your notes or textbooks from previous courses on EV technology.
  • Attend a webinar or watch videos on EV technology.
  • Complete practice problems or quizzes on EV technology concepts.
Nine other activities
Expand to see all activities and additional details
Show all 12 activities
Review the basics of electric mobility
Refresh your knowledge of the fundamentals of electric mobility, including its history, technology, and environmental benefits.
Browse courses on Electric Vehicles
Show steps
  • Read an article or watch a video about the history of electric vehicles.
  • Review the different types of electric vehicles and their advantages and disadvantages.
  • Learn about the environmental benefits of electric vehicles, such as reduced emissions and energy consumption.
Follow a tutorial on electric vehicle maintenance
Enhance your understanding of electric vehicle maintenance by following a guided tutorial that covers key maintenance tasks and best practices.
Show steps
  • Find a reputable tutorial on electric vehicle maintenance.
  • Follow the tutorial step-by-step, paying attention to the safety precautions.
  • Complete the maintenance tasks as instructed in the tutorial.
Follow Battery Technology Tutorials
Enhance your understanding of battery technology through guided tutorials
Browse courses on Battery Technology
Show steps
  • Identify reputable online platforms or YouTube channels offering tutorials
  • Follow a series of tutorials covering battery fundamentals, types, and applications
  • Optional: Engage in online discussions or forums related to battery technology
Follow along with online tutorials on EV Charging Infrastructure
Guided tutorials can help you learn about the different types and uses of EV charging infrastructure.
Show steps
  • Find a reputable online source for EV charging infrastructure tutorials.
  • Start with the basics of EV charging, such as different types of chargers and their compatibility with different EVs.
  • Learn about the different types of charging stations, such as public, private, and workplace chargers.
  • Explore the latest advancements in EV charging technology, such as wireless charging and ultra-fast charging.
  • Complete any quizzes or assignments associated with the tutorials to test your understanding.
Solve practice problems on electric vehicle charging
Practice solving problems related to electric vehicle charging, such as calculating charging time, range, and energy consumption.
Browse courses on Electric Vehicle Charging
Show steps
  • Find practice problems online or in textbooks.
  • Solve the problems using the formulas and concepts learned in the course.
  • Check your answers and identify areas where you need more practice.
Practice Economic Analysis
Sharpen your economic analysis skills through practice exercises
Browse courses on Economic Analysis
Show steps
  • Solve practice problems on topics like cost-benefit analysis and market equilibrium
  • Utilize online platforms or textbooks for guided practice
  • Optional: Collaborate with peers or form study groups for discussion and support
Design and build a model electric vehicle
Apply your knowledge of electric mobility to design and build a working model of an electric vehicle, showcasing your understanding of its components and functionality.
Show steps
  • Research different electric vehicle designs and choose one to replicate.
  • Gather the necessary materials and components.
  • Design and build the chassis, body, and drivetrain of the vehicle.
  • Integrate the electrical system, including the battery, motor, and controller.
  • Test and refine the vehicle's performance.
Create a Presentation on Electric Vehicle Infrastructure
Solidify your understanding by creating a comprehensive presentation on electric vehicle infrastructure
Show steps
  • Research and gather information on different types of charging stations and infrastructure requirements
  • Develop a structured presentation outline
  • Create visual aids and supporting materials
  • Practice delivering your presentation
Design and propose an innovative EV charging solution for a specific location
This project will challenge you to apply your knowledge of EV charging infrastructure and market trends to a real-world scenario.
Browse courses on Electric Vehicle Charging
Show steps
  • Identify a specific location with a need for EV charging infrastructure.
  • Research the local EV market, including the types of EVs in use and charging habits of drivers.
  • Design a charging solution that meets the needs of the location, considering factors such as power requirements, accessibility, and cost.
  • Create a proposal outlining your solution, including technical specifications, financial analysis, and a marketing plan.
  • Present your proposal to stakeholders or potential investors.

Career center

Learners who complete Electric Vehicles and Mobility will develop knowledge and skills that may be useful to these careers:
Professor
A Professor teaches and conducts research in the field of electric vehicles and mobility. They work with students, researchers, and other professionals to develop new technologies and solutions to improve the environmental impact of transportation. This course on Electric Vehicles and Mobility can be useful in this role, as it provides a comprehensive overview of the environmental impact of vehicles, as well as the technical and economic dimensions of electric vehicle infrastructures.
Research Scientist
A Research Scientist conducts research in the field of electric vehicles and mobility. They work with universities, governments, and other organizations to develop new technologies and solutions to improve the environmental impact of transportation. This course on Electric Vehicles and Mobility can be useful in this role, as it provides a comprehensive overview of the environmental impact of vehicles, as well as the technical and economic dimensions of electric vehicle infrastructures.
Sustainability Consultant
A Sustainability Consultant advises businesses, governments, and other organizations on how to reduce their environmental impact. They work with clients to develop and implement sustainability strategies, including strategies for reducing greenhouse gas emissions and improving energy efficiency. This course on Electric Vehicles and Mobility can be useful in this role, as it provides a comprehensive overview of the environmental impact of vehicles, as well as the economic analysis of electric mobility.
Mobility Planner
A Mobility Planner develops and implements plans to improve transportation systems. They work with governments, businesses, and other organizations to create transportation systems that are safe, efficient, and sustainable. This course on Electric Vehicles and Mobility can be useful in this role, as it provides a comprehensive overview of the environmental impact of vehicles, as well as the technical and economic dimensions of electric vehicle infrastructures.
Electric Vehicle Charging Specialist
An Electric Vehicle Charging Specialist manages and oversees the installation and maintenance of electric vehicle charging stations. They work with architects, engineers, and other professionals to plan and design charging stations that are safe, efficient, and reliable. This course on Electric Vehicles and Mobility can be useful in this role, as it provides a comprehensive overview of the technical and economic dimensions of electric vehicle infrastructures.
Transportation Engineer
A Transportation Engineer designs, plans, and constructs transportation systems. They work with governments, businesses, and other organizations to create transportation systems that are safe, efficient, and sustainable. This course on Electric Vehicles and Mobility can be useful in this role, as it provides a comprehensive overview of the environmental impact of vehicles, as well as the technical and economic dimensions of electric vehicle infrastructures.
Urban Planner
An Urban Planner develops and implements plans for the development of cities and towns. They work with governments, businesses, and other organizations to create urban environments that are sustainable, livable, and equitable. This course on Electric Vehicles and Mobility can be useful in this role, as it provides a comprehensive overview of the environmental impact of vehicles, as well as the technical and economic dimensions of electric vehicle infrastructures.
Automotive Executive
An Automotive Executive is a business leader in the automotive industry. They are responsible for overseeing the development, production, and marketing of vehicles. This course on Electric Vehicles and Mobility can be useful in this role, as it provides a comprehensive overview of the environmental impact of vehicles, as well as the technical and economic dimensions of electric vehicle infrastructures. Knowledge of these issues can aid in effective decision-making for the business.
Sales Manager
A Sales Manager is responsible for leading a sales team to achieve sales targets. They work with customers to identify their needs and develop solutions. This course on Electric Vehicles and Mobility can be useful in this role, as it provides a comprehensive overview of the environmental impact of vehicles, as well as the technical and economic dimensions of electric vehicle infrastructures. Knowledge of these issues can aid in effectively communicating the benefits of electric vehicles to potential customers.
Consultant
A Consultant provides advice and guidance to businesses and organizations. They work with clients to identify and solve problems. This course on Electric Vehicles and Mobility can be useful in this role, as it provides a comprehensive overview of the environmental impact of vehicles, as well as the technical and economic dimensions of electric vehicle infrastructures. Knowledge of these issues can aid in providing valuable insights and recommendations to clients in the automotive or transportation industries.
Environmental Engineer
An Environmental Engineer designs and implements solutions to environmental problems. They work with businesses, governments, and other organizations to reduce pollution, protect natural resources, and improve public health. This course on Electric Vehicles and Mobility can be useful in this role, as it provides a comprehensive overview of the environmental impact of vehicles, as well as the technical and economic dimensions of electric vehicle infrastructures.
Public Policy Analyst
A Public Policy Analyst researches, develops, and analyzes public policies. They work with governments, businesses, and other organizations to develop policies that address social, economic, and environmental issues. This course on Electric Vehicles and Mobility can be useful in this role, as it provides a comprehensive overview of the environmental impact of vehicles, as well as the economic analysis of electric mobility.
Energy Policy Analyst
An Energy Policy Analyst researches, develops, and analyzes energy policies. They work with governments, businesses, and other organizations to develop policies that promote the efficient use of energy and the development of renewable energy sources. This course on Electric Vehicles and Mobility can be useful in this role, as it provides a comprehensive overview of the environmental impact of vehicles, as well as the economic analysis of electric mobility.
Project Manager
A Project Manager is responsible for planning, executing, and closing projects. They work with teams of people to achieve project objectives. This course on Electric Vehicles and Mobility can be useful in this role, as it provides a comprehensive overview of the environmental impact of vehicles, as well as the technical and economic dimensions of electric vehicle infrastructures. Knowledge of these issues can aid in effective project planning and execution, especially for projects related to electric vehicles or sustainable transportation.
Automotive Engineer
An Automotive Engineer designs, develops, tests, and evaluates vehicles, their components, and their systems. They use their knowledge of engineering principles to create vehicles that are safe, efficient, and environmentally friendly. This course on Electric Vehicles and Mobility can be useful in this role, as it provides a comprehensive overview of the environmental impact of vehicles, as well as the technical and economic dimensions of electric vehicle infrastructures.

Reading list

We've selected nine books that we think will supplement your learning. Use these to develop background knowledge, enrich your coursework, and gain a deeper understanding of the topics covered in Electric Vehicles and Mobility.
Provides a detailed overview of electric and hybrid vehicles, including their design, operation, and performance. It valuable resource for engineers, researchers, and students working in the field of electric vehicles.
A comprehensive overview of electric vehicles and sustainable mobility, written in French. It covers the technical, economic, and environmental aspects of electric vehicles, as well as the challenges and opportunities of their adoption.
A comprehensive overview of electric vehicle technology, including an introduction to electric machines, batteries, charging systems, and power electronics. It valuable resource for those looking to gain a deeper understanding of the engineering principles behind electric vehicles.
A timely and valuable resource for understanding the challenges and perspectives of electric mobility, written in French. It offers a multidisciplinary perspective on the environmental, economic, and societal implications of electric vehicles.
A practical guide to electric vehicles, written in French. It provides a comprehensive overview of the different types of electric vehicles, as well as the charging infrastructure and costs associated with electric vehicle ownership.
This report provides an overview of the future of electric vehicles, including the challenges and opportunities for the development and deployment of electric vehicles. It valuable resource for policymakers, industry leaders, and researchers.
This report provides an overview of the environmental benefits of electric vehicles. It valuable resource for policymakers and consumers.
This report provides an overview of the role of electric vehicles in sustainable transportation. It valuable resource for policymakers and industry leaders.
This report provides a global perspective on electric vehicles. It valuable resource for policymakers and industry leaders.

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