Average Travel Time Estimations for Urban Routes that Consider Exit Turning Movements
Author(s) -
Ashish Bhaskar,
Edward Chung,
AndréGilles Dumont
Publication year - 2012
Publication title -
transportation research record journal of the transportation research board
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.624
H-Index - 119
eISSN - 2169-4052
pISSN - 0361-1981
DOI - 10.3141/2308-06
Subject(s) - component (thermodynamics) , computer science , upstream (networking) , travel time , estimation , interval (graph theory) , simulation , downstream (manufacturing) , real time computing , transport engineering , engineering , mathematics , computer network , operations management , physics , systems engineering , combinatorics , thermodynamics
This paper presents a methodology for real-time estimation of exit movement-specific average travel time on urban routes by integrating real-time cumulative plots, probe vehicles, and historic cumulative plots. Two approaches, component based and extreme based, are discussed for route travel time estimation. The methodology is tested with simulation and is validated with real data from Lucerne, Switzerland, that demonstrate its potential for accurate estimation. Both approaches provide similar results. The component-based approach is more reliable, with a greater chance of obtaining a probe vehicle in each interval, although additional data from each component is required. The extreme-based approach is simple and requires only data from upstream and downstream of the route, but the chances of obtaining a probe that traverses the entire route might be low. The performance of the methodology is also compared with a probe-only method. The proposed methodology requires only a few probes for accurate estimation; the probe-only method requires significantly more probes
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