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Title:

COMPARISONS OF DETERMINISTIC AND STOCHASTIC TRAFFIC LOADING MODELS

Accession Number:

00744748

Record Type:

Component

Availability:

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Order URL: http://worldcat.org/isbn/0309062136

Abstract:

Stochastic route choice models have been proposed as a more realistic alternative to the simpler deterministic route choice representations in models for loading traffic onto a network. However, studies on stochastic route choice models have thus far been limited to small experimental networks. Because stochastic models are in general considered to be more realistic in their assumptions than deterministic models, it becomes pertinent to examine their implementation and the corresponding traffic loading on a network of realistic size. Such an implementation for two stochastic route choice models is examined. The results indicate that the differences among the models, at the network level, for predicted link flows and average travel times between origin and destinations are not major, and therefore, deterministic models may suffice for long-range network planning. However, stochastic models predict the usage of more links in the network, and the difference in the flows at the link level may play an important role in travel advisory and route guidance systems. Some suggestions for future research are presented.

Supplemental Notes:

This paper appears in Transportation Research Record No. 1607, Transportation Forecasting and Travel Behavior.

Language:

English

Corporate Authors:

Transportation Research Board

500 Fifth Street, NW
Washington, DC 20001 United States

Authors:

Tatineni, M
Boyce, D E
Mirchandani, P

Pagination:

p. 16-23

Publication Date:

1997

Serial:

Transportation Research Record

Issue Number: 1607
Publisher: Transportation Research Board
ISSN: 0361-1981

ISBN:

0309062136

Features:

Figures (3) ; References (15) ; Tables (2)

Subject Areas:

Data and Information Technology; Highways; Planning and Forecasting; Research; I72: Traffic and Transport Planning

Files:

TRIS, TRB, ATRI

Created Date:

Jan 7 1998 12:00AM

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