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Traffic and Granular Flow '11

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Cover of 'Traffic and Granular Flow '11'

Table of Contents

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    Book Overview
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    Chapter 1 The Fundamental Diagram on the Ring Geometry for Particle Processes with Acceleration/Braking Asymmetry
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    Chapter 2 A Bogdanov–Takens Bifurcation in Generic Continuous Second Order Traffic Flow Models
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    Chapter 3 Model of Vehicular Traffic by Hilliges and Weidlich Revisited
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    Chapter 4 Stationary State Properties of a Microscopic Traffic Flow Model Mixing Stochastic Transport and Car-Following
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    Chapter 5 Identifiability and Practical Relevance of Complex Car-Following Models
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    Chapter 6 Latent Heat of a Traffic Model
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    Chapter 7 Estimation of Transport Systems Capacity
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    Chapter 8 Classification Approach to Traffic Flow Simulation
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    Chapter 9 Multilane Vehicular Traffic Simulation Using the CA Theory
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    Chapter 10 Multi-agent Model of the Price Flow Dynamics
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    Chapter 11 Calibration of Nomad Parameters Using Empirical Data
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    Chapter 12 Estimating Model Parameters for Bottlenecks in Evacuation Conditions
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    Chapter 13 Counterflow in Evacuations
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    Chapter 14 Using a Telepresence System to Investigate Route Choice Behavior
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    Chapter 15 A Cellular Automaton Approach for Lane Formation in Pedestrian Counterflow
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    Chapter 16 A Methodological Approach to Adjustment of Pedestrian Simulations to Live Scenarios: Example of a German Railway Station
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    Chapter 17 Optimal Density in a Queue with Starting-Wave
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    Chapter 18 Arch-Shaped Equilibrium Solutions in Social Force Model
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    Chapter 19 Effect of Rhythm on Pedestrian Flow
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    Chapter 20 Social Field Model to Simulate Bidirectional Pedestrian Flow Using Cellular Automata
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    Chapter 21 Some Empirical Studies on Evacuation from a Hall
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    Chapter 22 Understanding and simulating large crowds
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    Chapter 23 Experimental Study of Pedestrian Flow Through a T-Junction
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    Chapter 24 Geodesics and Shortest Paths Approach in Pedestrian Motions
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    Chapter 25 Modeling the Desired Direction in a Force-Based Model for Pedestrian Dynamics
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    Chapter 26 A Simple Model for Phase Separation in Pedestrian Dynamics
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    Chapter 27 HERMES: An Evacuation Assistant for Large Sports Arenas Based on Microscopic Simulations of Pedestrian Dynamics
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    Chapter 28 Pedestrians and Escalators: Usage Under Normal Conditions
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    Chapter 29 Model of Sand Transport by Consecutive Particle Collisions with Wind Interaction
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    Chapter 30 “Faster Is Slower” Effect in Granular Flows
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    Chapter 31 Modeling of Nanoparticles in a Gas Flow
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    Chapter 32 Multiple Shear Banding in Granular Materials
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    Chapter 33 Anisotropic Elasticity in Sheared Packings of Frictional Disks
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    Chapter 34 Two-Variable Macroscopic Fundamental Diagrams for Traffic Networks
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    Chapter 35 A Uzawa Algorithm for Static Traffic Assignment in an Orthotropic Network
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    Chapter 36 Route Advice Based on Subnetwork Properties
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    Chapter 37 Dynamic User Optimal Route Assignment System for Traffic Flows Microsimulation
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    Chapter 38 On Traffic Flow on the Arterial Network Model
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    Chapter 39 Quasi-stationary Approach in Mathematical Modeling of Traffic Flows Dynamics in a City Road Network
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    Chapter 40 Some Problems of Rational Route Choice for a City Road Network
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    Chapter 41 Weighted Value Feedback Strategy in Intelligent Two-Route Traffic Systems with a Bottleneck
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    Chapter 42 On Traffic Control Means Recognition in Intelligent Monitoring and Traffic Safety
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    Chapter 43 Interaction of Cars and Bicycles on a One-Way Road Intersection: A Network CA-Based Model
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    Chapter 44 About New Dynamical Interpretations of Entropic Model of Correspondence Matrix Calculation and Nash-Wardrop’s Equilibrium in Beckmann’s Traffic Flow Distribution Model
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    Chapter 45 Feed Forward Back Propagation Neural Networks to Classify Freeway Traffic Flow State
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Title
Traffic and Granular Flow '11
Published by
Springer Berlin Heidelberg, July 2014
DOI 10.1007/978-3-642-39669-4
ISBNs
978-3-64-239668-7, 978-3-64-239669-4
Editors

Kozlov, Valery V., Buslaev, Alexander P., Bugaev, Alexander S., Yashina, Marina V., Schadschneider, Andreas, Schreckenberg, Michael

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 73 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Germany 2 3%
Russia 1 1%
Unknown 70 96%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 20 27%
Student > Master 13 18%
Researcher 10 14%
Professor 5 7%
Student > Doctoral Student 4 5%
Other 7 10%
Unknown 14 19%
Readers by discipline Count As %
Engineering 24 33%
Computer Science 7 10%
Physics and Astronomy 5 7%
Design 4 5%
Business, Management and Accounting 2 3%
Other 12 16%
Unknown 19 26%