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Vincent Kaufmann, Olivier Klein, Ayman Zoubir, and Emmanuel Ravalet

"Planification des mobilités" est un cours conçu autour des enjeux environnementaux, économiques, territoriaux et sociaux qui sont liés à la mobilité. Au-delà du transport, la mobilité englobe une multitude de phénomènes et de réalités qui changent

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"Planification des mobilités" est un cours conçu autour des enjeux environnementaux, économiques, territoriaux et sociaux qui sont liés à la mobilité. Au-delà du transport, la mobilité englobe une multitude de phénomènes et de réalités qui changent

et interagissent en permanence. Cela implique des choix politiques qui s’inscrivent dans le temps et qui sont au cœur de l'exercice de la planification. Ainsi, au cours de 5 semaines et avec la participation de nombreux intervenants, le cours met à votre disposition des éléments théoriques, des outils, des techniques et des exemples pratiques qui vous aideront pour entreprendre une démarche de planification de mobilité.

Ce MOOC est le produit d’une collaboration entre deux laboratoires de recherche : le Laboratoire de Sociologie Urbaine de l’EPFL et le Laboratoire Aménagement Economie Transport de L’ENTPE à l’Université de Lyon.

(Photographie de la vignette: Stéphane Thérond, 2017)

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What's inside

Syllabus

Introduction du cours
Cette semaine vise à introduire le cours au travers de plusieurs vidéos présentant en particulier les objectifs et la structure d'ensemble. Deux vidéos introductives, permettant de mieux définir mobilité et planification sont associées à des interviews de trois acteurs-clés de la planification des mobilités : les politiques, les opérateurs de transports et les associations.
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SEMAINE 2 : Connaître et décrire
Cette semaine a pour objectif de mettre en évidence la manière dont on peut faire un diagnostic de territoire au travers de la connaissance et de la description des acteurs qui y sont localisés, de l'offre de transport et de la demande de déplacement. La semaine commence par des éléments d'ordre méthodologique, pour situer les données qui peuvent être mobilisées dans la perspective d'une démarche de planification.
SEMAINE 3 : Comprendre pour prévoir
Être en mesure de décrypter, derrière les tendances et les déterminants de la mobilité, quels sont les ressorts historiques et sociétaux de manière à être en mesure de travailler sur les tendances futures, à court et/ou long terme, tel est l'objectif de cette troisième semaine.
Semaine 4 : Agir/Planifier
A partir des modalités d'intervention de la puissance publique, l'objectif de cette semaine est de discuter la manière dont les priorités d'intervention sont construites, les acteurs et les contraintes qui traversent la planification dans plusieurs pays européens, et la manière dont sont intégrés les processus de concertation et de participation.
Semaine 5 . Décliner/adapter
Cette cinquième et dernière semaine vise à fournir des outils permettant de passer du prêt-à-porter au sur-mesure dans l'exercice de la planification des mobilités. Si le discours était général sur les quatre première semaine du cours, nous focaliserons l'attention ici sur des exemples précis de territoires et de problématiques pour voir en quoi leurs particularismes doivent orienter l'action publique.

Good to know

Know what's good
, what to watch for
, and possible dealbreakers
Plonge les apprenants dans le domaine de la planification de la mobilité, ce qui est essentiel pour les planificateurs de la circulation, les urbanistes et les décideurs politiques
Enseigne les théories, les outils, les techniques et les exemples pratiques liés à la planification de la mobilité, ce qui aide les apprenants à développer des compétences pratiques
Aborde les aspects environnementaux, économiques, territoriaux et sociaux de la mobilité, ce qui est pertinent pour les apprenants souhaitant acquérir une perspective multidisciplinaire
Fournit des éléments théoriques et des exemples pratiques, ce qui convient aux apprenants cherchant à acquérir à la fois des connaissances fondamentales et une application concrète
Inclut des interventions de nombreux intervenants, ce qui permet aux apprenants d'acquérir des connaissances auprès de divers experts dans le domaine
Est enseigné par des instructeurs réputés du Laboratoire de Sociologie Urbaine de l'EPFL et du Laboratoire Aménagement Économie Transport de l'ENTPE de l'Université de Lyon

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Reviews summary

Clear mobility planning course

This course provides theoretical knowledge, tools, techniques, and practical examples for undertaking a mobility planning approach. It covers environmental, economic, territorial, and social issues related to mobility. The course features contributions from various experts and includes interviews with key stakeholders in mobility planning.
Features contributions from experts in mobility planning.
"associées à des interviews de trois acteurs-clés de la planification des mobilités"
Offers practical tools and examples for mobility planning.
"fournit des outils permettant de passer du prêt-à-porter au sur-mesure dans l'exercice de la planification des mobilités."
Delivers solid knowledge in mobility planning.
"Un cours qui permettre d'apprendre et de se mettre à jour dans le domaine de la mobilité."
"Très sympa et donne une bonne vision général de la planification"
Some content may not be directly related to mobility.
"certaines semaines (... la semaine 2), j'ai trouvé que les questionnaires n'étaient pas suffisamment orientés Mobiltié et traitaient trop d'un bon sens.."

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 Planification des mobilités with these activities:
Sharpen analytical and problem-solving skills
Strong analytical and problem-solving skills are crucial for success in mobility planning.
Browse courses on Analytical Skills
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  • Review basic concepts and techniques.
  • Practice applying these skills to real-world scenarios.
Revisit concepts of movement and mobility
Refresher on the concepts of movement and mobility will make the course material easier to grasp and build off of.
Browse courses on Movement
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  • Review definitions and key theories related to mobility.
  • Reflect on personal experiences and observations of movement and mobility patterns.
Review concepts of mobility
Students should be able to apply advanced concepts and theories of economics, human behavior, and statistics to analyze and solve problems related to mobility, transportation, and urban planning.
Browse courses on Mobility
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  • Read through the course syllabus and identify key mobility concepts
  • Review notes from previous courses or textbooks on mobility, transportation, or urban planning
  • Look up definitions and explanations of unfamiliar mobility concepts
Five other activities
Expand to see all activities and additional details
Show all eight activities
Engage in discussions with peers on mobility planning challenges
Engaging with peers will provide diverse perspectives and foster deeper understanding of mobility planning challenges.
Browse courses on Mobility Planning
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  • Join online forums or discussion groups related to mobility planning.
  • Actively participate in discussions, sharing insights and asking questions.
Explore case studies and examples of mobility planning
Understanding real-world examples of mobility planning will provide context and make the course material more tangible.
Browse courses on Mobility Planning
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  • Identify and research case studies of successful mobility planning initiatives.
  • Analyze the strategies, challenges, and outcomes of these case studies.
Practice applying data analysis techniques to mobility data
Hands-on practice with data analysis techniques will enhance understanding of how data is used in mobility planning.
Browse courses on Data Analysis
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  • Familiarize yourself with data analysis tools and techniques.
  • Apply these techniques to analyze real-world mobility data.
Develop a mobility plan for a hypothetical scenario
Creating a hypothetical mobility plan will provide practical experience in applying course concepts.
Browse courses on Mobility Planning
Show steps
  • Identify a hypothetical scenario and research relevant data.
  • Develop a comprehensive mobility plan addressing the identified challenges.
  • Present the plan, explaining the rationale and potential impact.
Share knowledge and skills by mentoring junior students
Mentoring others reinforces learning and deepens understanding of mobility planning concepts.
Browse courses on Mentoring
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  • Identify opportunities to mentor junior students interested in mobility planning.
  • Provide guidance and support, sharing knowledge and experiences.

Career center

Learners who complete Planification des mobilités will develop knowledge and skills that may be useful to these careers:
Sustainable Transportation Planner
Sustainable Transportation Planners focus on creating transportation systems that meet the needs of society while minimizing environmental impact. They work with communities, businesses, and government agencies to develop plans that promote walking, biking, public transit, and other sustainable modes of transportation. The course provides a comprehensive overview of sustainable transportation planning, including topics such as land use, transportation demand management, and environmental assessment, which are essential knowledge for individuals in this field.
Transportation Economist
Transportation Economists analyze the economic impacts of transportation systems and policies. They use economic principles to evaluate the costs and benefits of different transportation options and make recommendations on how to improve efficiency and sustainability. The course provides a foundation in transportation economics, including topics such as demand modeling, cost-benefit analysis, and pricing strategies, which are essential for Transportation Economists.
Transportation Research Scientist
Transportation Research Scientists conduct research to improve the safety, efficiency, and sustainability of transportation systems. They develop new technologies, evaluate existing systems, and make recommendations for policy changes. The course provides a foundation in transportation research methods, including topics such as data collection, analysis, and modeling, which are essential for Transportation Research Scientists.
Transportation Consultant
Transportation Consultants provide expert advice on transportation planning, engineering, and management. They work with clients to develop and implement transportation solutions that meet their specific needs. The course provides a comprehensive overview of transportation planning and engineering principles, which are essential for Transportation Consultants.
Urban Planner
Urban Planners shape the physical environment of cities and towns, considering factors such as land use, zoning, and transportation. They work with community members, government officials, and other stakeholders to create plans that promote sustainable and livable communities. The course provides a foundation in mobility planning, helping Urban Planners understand the impact of transportation on urban development and how to plan for sustainable mobility.
Transportation Safety Engineer
Transportation Safety Engineers work to improve the safety of transportation systems. They identify hazards, develop safety measures, and conduct safety audits. The course provides an overview of transportation safety principles, including topics such as risk assessment, accident investigation, and safety management systems, which are essential for Transportation Safety Engineers.
Traffic Engineer
Traffic Engineers design and manage traffic systems to improve safety, efficiency, and mobility. They analyze traffic patterns, design intersections and roadways, and implement traffic control measures. The course provides an overview of traffic engineering principles, including topics such as traffic flow analysis, intersection design, and signal timing, which are essential for Traffic Engineers.
Urban Designer
Urban Designers shape the physical environment of cities and towns, considering factors such as land use, zoning, and architecture. They work with communities, government officials, and other stakeholders to create plans that promote livable, sustainable, and aesthetically pleasing communities. The course provides a foundation in urban design principles, including topics such as land use planning, zoning, and urban aesthetics, which are essential for Urban Designers working in the transportation field.
Environmental Engineer
Environmental Engineers address environmental challenges, such as air and water pollution, climate change, and waste management. They design and implement solutions to protect human health and the environment. The course provides knowledge on environmental issues related to mobility, including transportation emissions, land use, and sustainability, which are crucial for Environmental Engineers working in this field.
Policy Analyst
Policy Analysts research, analyze, and evaluate public policies. They make recommendations to policymakers on how to improve the effectiveness and efficiency of government programs. The course provides a foundation in public policy analysis, including topics such as policy design, evaluation, and implementation, which are essential for Policy Analysts working in the transportation sector.
Transportation Planner
Transportation Planners apply urban planning principles to design safe, efficient, and environmentally sustainable transportation systems. They consider various modes of transportation, such as public transit, highways, and bike lanes, to develop plans that meet the community's needs. By understanding the course concepts such as mobility, transportation, and planning, individuals can develop a strong foundation for a career in Transportation Planning.
Public Policy Analyst
Public Policy Analysts research, analyze, and evaluate public policies. They make recommendations to policymakers on how to improve the effectiveness and efficiency of government programs. The course provides a foundation in public policy analysis, including topics such as policy design, evaluation, and implementation, which are essential for Public Policy Analysts working in transportation-related policy.
Geographic Information Systems (GIS) Analyst
GIS Analysts use geographic information systems (GIS) to collect, analyze, and visualize data. They use GIS to create maps, reports, and other visualizations that help decision-makers understand complex spatial relationships. The course provides a foundation in GIS principles, including topics such as data collection, analysis, and visualization, which are essential for GIS Analysts working in the transportation field.
Logistics Manager
Logistics Managers plan and coordinate the movement of goods and materials. They work with suppliers, carriers, and customers to ensure that products are delivered on time, at the right cost, and in good condition. The course provides an overview of logistics management principles, including topics such as inventory control, transportation management, and supply chain optimization, which are essential for Logistics Managers in the transportation industry.
Civil Engineer
Civil Engineers design, build, and maintain the physical infrastructure of our world, including roads, bridges, buildings, and water systems. They consider factors such as safety, sustainability, and cost to create structures that meet the needs of society. The course provides a comprehensive overview of mobility planning, including topics such as transportation systems, land use, and environmental impact, which are essential knowledge for Civil Engineers in this field.

Reading list

We've selected eight 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 Planification des mobilités.
Introduces the issues surrounding transport and climate change, providing the reader with an understanding of the sources of greenhouse gas emissions and the mitigation options available.
This comprehensive handbook provides detailed information on all aspects of traffic engineering, serving as a valuable reference for practitioners.
This handbook offers a comprehensive overview of regional development theories and practices, providing insights into the factors that shape regional economies and how to promote sustainable development.
This textbook provides a comprehensive overview of airport planning and design, covering topics such as capacity planning, runway design, and terminal design.
This textbook provides a comprehensive introduction to traffic engineering, covering topics such as traffic flow, intersection design, and traffic safety.
Provides a comprehensive overview of traffic and highway engineering, covering topics such as traffic flow theory, intersection design, and highway safety.
Provides a comprehensive overview of transportation policy, covering topics such as transportation planning, transportation financing, and transportation regulation.

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