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Lecture
Traffic Flow Modeling and Intelligent Transport Systems
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Related lectures (32)
Ramp Metering: Applications
MOOC: Intro to Traffic Flow Modeling and Intelligent Transport Systems
Covers the concept and benefits of ramp metering, its implementation issues, and case studies from Amsterdam and Australia.
Real-time traffic management
MOOC: Intro to Traffic Flow Modeling and Intelligent Transport Systems
Covers real-time traffic management, including traffic flow modeling, control strategies, sensors, and public transport priority.
Actuated and Coordinated Control
MOOC: Intro to Traffic Flow Modeling and Intelligent Transport Systems
Covers actuated and coordinated control in traffic flow modeling and ITS.
Traffic Flow Modelling: Urban Congestion and Mobility Improvement
MOOC: Intro to Traffic Flow Modeling and Intelligent Transport Systems
Focuses on urban congestion, traffic management schemes, and improving mobility through elegant models and smart control algorithms.
Static Route Choice: Congestion Games
MOOC: Intro to Traffic Flow Modeling and Intelligent Transport Systems
Explores static route choice, congestion games, equilibrium concepts, Braess paradox, and system performance.
Variable speed limits: Traffic flow modeling and ITS
MOOC: Intro to Traffic Flow Modeling and Intelligent Transport Systems
Covers variable speed limits, merging traffic control, and feedback structures for traffic flow.
Traffic Flow Modeling: LWR Theory Examples
MOOC: Intro to Traffic Flow Modeling and Intelligent Transport Systems
Explores applying LWR theory to analyze traffic congestion scenarios.
Urban Restructuring in Pikine Irregular South: Tools and Methods
Covers the urban restructuring of Pikine Irregular South, focusing on traffic flow, public transportation networks, and social facilities.
Equilibrium Approximation: How Good
MOOC: Intro to Traffic Flow Modeling and Intelligent Transport Systems
Delves into the limits of equilibrium models in transportation and the concept of equilibrium stability in traffic conditions.
Macroscopic Fundamental Diagram, Dynamic Modeling
MOOC: Intro to Traffic Flow Modeling and Intelligent Transport Systems
Explores the Macroscopic Fundamental Diagram in traffic flow modeling and multimodal networks.
Urban Planning: Sustainable Mobility Integration
Explores sustainable urban planning tools and methods in Africa, emphasizing mobility integration and challenges.
Urban Mobility in Brussels
MOOC: Mobility and urban planning
Explores urban mobility and planning in Brussels, focusing on the Schuman multimodal hub and transportation infrastructure.
Human-Centric Ubiquitous Mobility: Intelligent Systems
Delves into the challenges and solutions of human-centric mobility in urban networks.
Traffic flow modeling: Developing and testing traffic models
MOOC: Intro to Traffic Flow Modeling and Intelligent Transport Systems
Covers the fundamentals of traffic flow modeling, including model classification and testing techniques.
Traffic flow variables
MOOC: Intro to Traffic Flow Modeling and Intelligent Transport Systems
Covers traffic flow variables, including space-time diagrams and speed calculations, based on Edie (1963).
Network level traffic management and control with MFDs
MOOC: Intro to Traffic Flow Modeling and Intelligent Transport Systems
Explores network-level traffic management and control using Macroscopic Fundamental Diagrams (MFDs) for large-scale urban transport systems.
Macroscopic Fundamentals Diagram, Physical Properties
MOOC: Intro to Traffic Flow Modeling and Intelligent Transport Systems
Covers the Macroscopic Fundamental Diagram in traffic flow modeling, discussing its physical properties, regularity conditions, and congestion propagation.
Traffic Flow Modeling: An Introduction to LWR Theory
MOOC: Intro to Traffic Flow Modeling and Intelligent Transport Systems
Covers the LWR traffic flow theory, including conservation laws, shock waves, basics, and principles.
Traffic signal control
MOOC: Intro to Traffic Flow Modeling and Intelligent Transport Systems
Explores the basics of traffic signal control, including phases, delay, saturation flow, and control strategies.
Switched Networks: Time and Safety Critical Applications
Explores the challenges and benefits of achieving segregation in switched networks for critical and non-critical messages.
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