Analytical Procedures for Determining the Impacts of Reliability Mitigation Strategies Analytical Procedures for Determining the Impacts of Reliability Mitigation Strategies

Analytical Procedures for Determining the Impacts of Reliability Mitigation Strategies

    • $21.99
    • $21.99

Descripción editorial

This report from the second Strategic Highway Research Program (SHRP 2), which is administered by the Transportation Research Board of the National Academies, explores predictive relationships between highway improvements and travel time reliability. How can the effect of an improvement on reliability be predicted? Alternatively, how can reliability be characterized as a function of highway, traffic, and operating conditions? The report presents two models that can be used to estimate or predict travel time reliability. The models have broad applicability to planning, programming, and systems management and operations.

GÉNERO
No ficción
PUBLICADO
2013
9 de enero
IDIOMA
EN
Inglés
EXTENSIÓN
318
Páginas
EDITORIAL
Transportation Research Board
VENDEDOR
National Academy of Sciences
TAMAÑO
7.1
MB
Identification and Evaluation of the Cost-Effectiveness of Highway Design Features to Reduce Nonrecurrent Congestion Identification and Evaluation of the Cost-Effectiveness of Highway Design Features to Reduce Nonrecurrent Congestion
2015
Guide to Establishing Monitoring Programs for Travel Time Reliability Guide to Establishing Monitoring Programs for Travel Time Reliability
2014
Further Development of the Safety and Congestion Relationship for Urban Freeways Further Development of the Safety and Congestion Relationship for Urban Freeways
2015
Incorporating Reliability Performance Measures into Operations and Planning Modeling Tools Incorporating Reliability Performance Measures into Operations and Planning Modeling Tools
2014
Feasibility of Using In-Vehicle Video Data to Explore How to Modify Driver Behavior That Causes Nonrecurring Congestion Feasibility of Using In-Vehicle Video Data to Explore How to Modify Driver Behavior That Causes Nonrecurring Congestion
2011
Data-Driven Traffic Engineering Data-Driven Traffic Engineering
2020