Urban traffic networks: dynamic flow modeling and control
This book provides recent research results on the most pertinent subjects for the development and the design of intelligent transportation systems and advanced transport telematics, including the following topics: dynamic traffic assignment models, dynamic route guidance methods, urban traffic management and control strategies, advanced traveller information systems, methods for congestion prediction and congestion pricing, queueing systems, etc. The book will be of particular interest to scientists, engineers and researchers that are involved in the development and application of advanced transportation technologies.
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System Optimal Dynamic Assignment for Electronic
H S Mahmassani and S Peeta 3
Design Aspects of Advanced Traveler Information
7 other sections not shown
approach assignment algorithm assumed behaviour calculation capacity computational congestion convergence cycle defined delay function destination Dijkstra's algorithm drivers DTAP dynamic assignment dynamic equilibrium dynamic traffic assignment emissions equation estimate evaluation exit FIFO constraints Figure formulation given graph inﬂuence information systems intersection interval iteration Kaysi kinematic wave Lagrange multipliers length link ﬂow link travel marginal costs method minimum spanning trees network topology node number of vehicles O-D desires O-D pair objective function obtained optimal control origin-destination paper parameters path flows penalty function period pollutants prediction system procedure queue real-time road route choice secant method simulation solution solving static system optimal time-dependent tolls total travel traffic assignment model traffic assignment problem traffic conditions traffic flow traffic signal traffic signal control traffic signal setting traﬂic Transportation Research travel time savings trip planners trip planning update urban traffic user equilibrium values variables vector Wardrop Wardrop's principle