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Modelling walking and cycling accessibility and mobility

The effect of network configuration and occupancy on spatial dynamics of active mobility

Auteur(s): ORCID



Médium: article de revue
Langue(s): anglais
Publié dans: Smart and Sustainable Built Environment, , n. 1, v. 7
Page(s): 101-116
DOI: 10.1108/sasbe-10-2017-0058
Abstrait:

Purpose

The most sustainable forms of urban mobility are walking and cycling. These modes of transportation are the most environmental friendly, the most economically viable and the most socially inclusive and engaging modes of urban transportation. To measure and compare the effectiveness of alternative pedestrianization or cycling infrastructure plans, the authors need to measure the potential flows of pedestrians and cyclists. The paper aims to discuss this issue.

Design/methodology/approach

The authors have developed a computational methodology to predict walking and cycling flows and local centrality of streets, given a road centerline network and occupancy or population density data attributed to building plots.

Findings

The authors show the functionality of this model in a hypothetical grid network and a simulated setting in a real town. In addition, the authors show how this model can be validated using crowd-sensed data on human mobility trails. This methodology can be used in assessing sustainable urban mobility plans.

Originality/value

The main contribution of this paper is the generalization and adaptation of two network centrality models and a trip-distribution model for studying walking and cycling mobility.

Structurae ne peut pas vous offrir cette publication en texte intégral pour l'instant. Le texte intégral est accessible chez l'éditeur. DOI: 10.1108/sasbe-10-2017-0058.
  • Informations
    sur cette fiche
  • Reference-ID
    10779929
  • Publié(e) le:
    12.05.2024
  • Modifié(e) le:
    12.05.2024
 
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