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Traffic Flow Theory

Specificaties
Paperback, blz. | Engels
Elsevier Science | 2026
ISBN13: 9780443337574
Rubricering
Elsevier Science e druk, 2026 9780443337574
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Samenvatting

Creating traffic models is a complex task due to the intricacies of road networks, space–time dependencies, heterogeneous traffic patterns, and numerous interacting components. The second edition of Traffic Flow Theory builds on foundational knowledge to express these elements in mathematical form and offers updated coverage of the latest field developments.

Authored by a leading academic, the volume dissects everyday traffic phenomena, detailing their characteristics, mechanisms, and dynamics through multi-level modeling approaches (macroscopic, microscopic, mesoscopic, and picoscopic) to explain why these phenomena occur and how they can be effectively simulated. The book then explores the practical applications of these simulations and contributes new, research-informed evidence showing that integrating the various analytical frameworks leads to a unified perspective—with significant benefits for optimizing safety and efficiency in transportation systems.

With its comprehensive, coherent, and self-contained treatment, Traffic Flow Theory 2E is set to become a staple reference for a broad transportation engineering audience and a valuable resource for readers in interconnected disciplines.

Specificaties

ISBN13:9780443337574
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

PART I: Traffic flow characteristics<br>1. Traffic sensing technologies<br>2. Traffic flow characteristics: simple definition<br>3. Traffic flow characteristics: generalized definition<br>4. Fundamental diagram<br><br>PART II: Macroscopic modeling<br>5. Macroscopic modeling<br>6. Waves<br>7. Shock wave and rarefaction wave<br>8. Lighthill–Whitham–Richards (LWR) model<br>9. Numerical solutions<br>10. Simplified theory of kinematic waves<br>11. Higher-order models<br><br>PART III: Microscopic modeling<br>12. Microscopic modeling<br>13. Pipes and Forbes models<br>14. General Motors (GM) models<br>15. Gipps model<br>16. More single-regime models<br>17. More intelligent models<br><br>PART IV: Picoscopic modeling<br>18. Picoscopic modeling<br>19. The Field Theory<br>20. Longitudinal control model<br><br>PART V: The unified perspective<br>21. The unifying diagram<br>22. Multiscale traffic flow modeling<br>23. Limitations of existing models<br>24. Look-ahead in traffic flow modeling<br><br>Part VI: Fundamental diagram<br>25. Human factors in traffic flow<br>26. Stochastic modeling of the fundamental diagram<br>27. Microscopic fundamental diagram<br>28. Phase diagram of traffic flow
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