Intro to Traffic Flow Modeling and Intelligent Transport Systems

课程
en
英语
35 时
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  • 来自www.edx.org
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  • 7 序列
  • 等级 中级

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课程详情

教学大纲

Week 1: Traffic Flow Basics
Introduction of basic traffic variables that are necessary to describe congestion (flow, density and speed) and the relations among them under equilibrium, known as fundamental diagram. Description of graphical tools such as time-space diagramsand input-output diagrams.

Week 2: Continuum Models of Traffic Flow
Review of the different families of traffic models (micro, meso, macro, network). Description of LWR(Lighthill-Whitham-Richards) models representing the dynamics of traffic streams through the continuity equation and an assumed equilibrium flow-density fundamental diagram.

Week 3: Traffic Modeling and Control for Freeway Systems
Introduction to different car following models. Description of space and time discretizationand the dynamic difference equations of the macroscopic Cell Transmission Model (CTM). Discussion of the concept of ramp metering in highway traffic applications.

Week 4: Macroscopic Fundamental Diagram (MFD)
Introduction to network level aggregated models. These models ignore small-scale information and describe how congestion changes over time and space in different zones of a city. Relations between traffic density and traffic flow emerge in a neat way, creating what is known as a MFD. Properties and dynamic characteristics of MFD models are presented.

Week 5: Network-level Traffic Management
Established control techniques are introduced, with the focus being on how they can be integrated with MFD models to provide large-scale traffic control for congested networks for single- and multi-region systems.

Week 6: Control of Traffic Signals
Introduction to the basics of traffic signal control. Description of methods to optimize traffic light settings. Generation of fixed-time signal plans for day-of-week and time-of-day implementation. Discussion of traffic responsive systems, the semi-actuated and fully-actuated control logic, and real-time adaptive strategies. Variable speed limits (VSL) are discussed as a measure to improve mobility in highway networks.

Week 7: Equilibria in Transportation
Introduction to the concept of User Equilibrium and the way it can be usedto predict and steer behavioral adjustments following long lasting perturbations. The fundamental concepts and assumptions required for such analyses are explained and illustrated with two applications: route and departure time choice.

先决条件

Analysis & Linear Algebra (1st year BSc level)

讲师

Nikolas Geroliminis
Associate Professor
École polytechnique fédérale de Lausanne

Anastasios Kouvelas
Doctor
École polytechnique fédérale de Lausanne

Raphaël Lamotte
Doctor
École polytechnique fédérale de Lausanne

Dimitrios Tsitsokas
Doctoral Assistant
École polytechnique fédérale de Lausanne

编辑

洛桑联邦理工学院(EPFL)是位于瑞士洛桑的一所研究型大学,专门从事物理科学和工程学研究。

洛桑联邦理工学院是瑞士两所联邦理工学院之一。它由瑞士联邦政府创办,其使命如下:

培养具有国际最高水平的工程师和科学家
成为国家科技卓越中心
成为科学界与工业界互动的中心。
EPFL 被认为是世界工程和科学领域最负盛名的大学之一。在 2015 年 QS 世界大学排名中,该校总排名第 17 位,工程学专业排名第 10 位;在 2015 年泰晤士高等教育世界大学排名中,该校总排名第 34 位,工程学专业排名第 12 位。

平台

EdX est une plateforme d'apprentissage en ligne (dite FLOT ou MOOC). Elle héberge et met gratuitement à disposition des cours en ligne de niveau universitaire à travers le monde entier. Elle mène également des recherches sur l'apprentissage en ligne et la façon dont les utilisateurs utilisent celle-ci. Elle est à but non lucratif et la plateforme utilise un logiciel open source.

EdX a été fondée par le Massachusetts Institute of Technology et par l'université Harvard en mai 2012. En 2014, environ 50 écoles, associations et organisations internationales offrent ou projettent d'offrir des cours sur EdX. En juillet 2014, elle avait plus de 2,5 millions d'utilisateurs suivant plus de 200 cours en ligne.

Les deux universités américaines qui financent la plateforme ont investi 60 millions USD dans son développement. La plateforme France Université Numérique utilise la technologie openedX, supportée par Google.

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