The Pedestrian Level of Service in Metro Stations: A Pilot Study Based on Passenger Detection Techniques

Author:

Seriani Sebastian1ORCID,Aprigliano Vicente1ORCID,Garcia Gonzalo2ORCID,Lopez Ariel3,Fujiyama Taku4

Affiliation:

1. Escuela de Ingeniería de Construcción y Transporte, Pontifica Universidad Católica de Valparaíso, Valparaíso 2362804, Chile

2. College of Engineering, Virginia Commonwealth University, Richmond, VA 23284, USA

3. Facultad de Arquitectura y Urbanismo, Universidad de Chile, Santiago 8330015, Chile

4. Faculty of Civil, Environmental and Geomatic Engineering, University College London, Chadwick Building, Gower St., London WC1E 6BT, UK

Abstract

The platform–train interface (PTI) is one of the most complex spaces in metro stations. At the PTI, the interaction of boarding and alighting causes a high number of passengers to be present, affecting the boarding and alighting time, among other variables related to safety and efficiency. This research was performed to develop a multidimensional level of service for passengers by means of observing existing stations. The methodology included five dimensions of the level of service (passenger behaviour, train design, passenger characteristics, train operation, and platform built environment), and detection techniques based on a tracking system. The stations are operating urban services in Valparaiso Metro (Chile). The results show that there is a relationship between the speed of passengers and the detected passengers, among other variables. In addition, the dispersion of passengers is analysed at the PTI. Further research will include other types of stations and conditions.

Funder

Anid, Chile

Publisher

MDPI AG

Reference36 articles.

1. Empresa de los Ferrocarriles del Estado (EFE) (2022). Memoria Anual Empresa de los Ferrocarriles del Estado, Empresa de los Ferrocarriles del Estado. (In Spanish).

2. Office of Rail and Road (ORR) (2024, May 14). Passenger Rail Usage. UK, Available online: https://dataportal.orr.gov.uk/statistics/usage/passenger-rail-usage/#:~:text=A%20total%20of%20417%20million,year%20to%2031%20December%202023.

3. TRB (2010). National Research Council, Highway Capacity Manual 2010, TRB.

4. Planning guidelines for metro–bus interchanges by means of a pedestrian microsimulation model;Seriani;Transp. Plan. Technol.,2015

5. Exploring the pedestrian level of interaction on platform conflict areas at metro stations by real-scale laboratory experiments;Seriani;Transp. Plan. Technol.,2017

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