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Pedestrian Route Choice by Iterated Equilibrium Search

Tobias Kretz (), Karsten Lehmann and Ingmar Hofsäß
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Tobias Kretz: PTV Group
Karsten Lehmann: PTV Group
Ingmar Hofsäß: PTV Group

A chapter in Traffic and Granular Flow '13, 2015, pp 47-54 from Springer

Abstract: Abstract In vehicular traffic planning it is a long standing problem how to assign demand such on the available model of a road network that an equilibrium with regard to travel time or generalized costs is realized. For pedestrian traffic this question can be asked as well. However, as the infrastructure of pedestrian dynamics is not a network (a graph), but two-dimensional, there is in principle an infinitely large set of routes. As a consequence none of the iterating assignment methods developed for road traffic can be applied for pedestrians. In this contribution a method to overcome this problem is briefly summarized and applied with an example geometry which as a result is enhanced with routes with intermediate destination areas of certain shape. The enhanced geometry is used in some exemplary assignment calculations.

Keywords: Route Choice Probability; Intermediate Destination; Pedestrian Dynamics; User Equilibrium; Current Travel Time (search for similar items in EconPapers)
Date: 2015
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Persistent link: https://EconPapers.repec.org/RePEc:spr:sprchp:978-3-319-10629-8_6

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DOI: 10.1007/978-3-319-10629-8_6

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