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Route Choice Through Regions by Pedestrian Agents (Short Paper)
Author(s) -
Gabriele Filomena,
Ed Manley,
Judith A. Verstegen
Publication year - 2019
Publication title -
drops (schloss dagstuhl – leibniz center for informatics)
Language(s) - English
Resource type - Conference proceedings
DOI - 10.4230/lipics.cosit.2019.5
Subject(s) - pedestrian , computer science , transport engineering , engineering
Simulation models for pedestrian movement are valuable tools to support decision-making processes in urban design. However, existing models of pedestrian behaviour are built on simplistic assumptions regarding people's representation of the urban space and spatial behaviour. In this work, a route-choice algorithm that takes into account regionalisation processes and the hierarchical organisation of geographical elements is adapted for pedestrian movement and incorporated into an agent-based model. The macro-level patterns emerging from two scenarios, one employing an angular-change minimisation algorithm and the other employing the regional algorithm here proposed, are compared for a case study in London, UK. Our routing algorithm led agents to recur to a higher number of street segments, i.e. routes were more diverse among agents. Though validation has not yet been performed, we deem the patterns resulting from the regional algorithm more plausible.

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