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An analysis of the influence of travel time on access time in public transport

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Sustainable mobility is a priority for transport systems in urban areas. Contemporary planning of transport systems assumes an increase in the role of public transport in everyday trips. To increase the share of trips using public transport, it is essential to improve the accessibility of public transport stops. The accessibility of such stops depends primarily on the distance between the trip origin and the stop. Many factors influence the distance that passengers are willing to travel. This paper discusses the relationship between the access time to the bus stop and travel time. To study such a relationship, various statistical methods may be applied. This paper presents the results of the analysis performed based on the data on trips made by inhabitants of Bielsko-Biała, gathered during the building of its transport model.
Rocznik
Tom
Strony
137--149
Opis fizyczny
Bibliogr. 27 poz.
Twórcy
  • Faculty of Transport and Aviation Engineering, The Silesian University of Technology, Krasińskiego 8 Street, 40-019 Katowice, Poland
  • Faculty of Transport and Aviation Engineering, The Silesian University of Technology, Krasińskiego 8 Street, 40-019 Katowice, Poland
  • Faculty of Transport and Aviation Engineering, The Silesian University of Technology, Krasińskiego 8 Street, 40-019 Katowice, Poland
  • Faculty of Transport and Aviation Engineering, The Silesian University of Technology, Krasińskiego 8 Street, 40-019 Katowice, Poland
Bibliografia
  • 1. Jacyna Marianna, Mariusz Wasiak, Konrad Lewczuk, Michał Kłodawski. 2014. “Simulation model of transport system of Poland as a tool for developing sustainable transport”. The Archives of Transport 31(3): 23-35. ISSN: 0866-9546. DOI: 10.5604/08669546.1146982.
  • 2. Jacyna Marianna, Mariusz Wasiak. 2015. “Multicriteria Decision Support in Designing Transport Systems”. In: Tools of Transport Telematics. Edited by Jerzy Mikulski. P. 1-13. Switzerland: Springer International Publishing. ISBN: 978-3-319-24576-8. DOI: https://doi.org/10.1007/978-3-319-24577-5.
  • 3. Jacyna Marianna, Piotr Gołębiowski, Emilian Szczepański. 2015. “City transport service model taking into account different means of transport”. 19th International Conference Transport Means 2015: 160-168. Kaunas University of Technology. 22-23.10.2015. Kaunas. ISSN: 1822-296X.
  • 4. Jacyna Marianna, Mariusz Wasiak, Konrad Lewczuk, Grzegorz Karoń. 2017. “Noise and environmental pollution from transport: decisive problems in developing ecologically efficient transport systems”. Journal of Vibroengineering 19(7): 5639-5655. ISSN: 2351-5260. DOI: https://doi.org/10.21595/jve.2017.19371.
  • 5. Chamier-Gliszczyński Norbert. 2011. “Sustainable Operation of a Transport System in Cities”. Key Engineering Materials 486: 175-178. DOI: https://doi.org/10.4028/www.scientific.net/kem.486.175.
  • 6. Jacyna-Gołda Ilona, Jolanta Żak, Piotr Gołębiowski. 2014. “Models of traffic flow distribution for scenario of the development of proecological transport system”. The Archives of Transport 32(4): 17-28. ISSN: 0866-9546. DOI: 10.5604/08669546.1146994.
  • 7. Jacyna-Gołda Ilona, Piotr Gołebiowski, Mariusz Izdebski, Michał Kłodawski, Roland Jachimowksi, Emilian Szczepański. 2017. “The evaluation the sustainable transport system development with the scenario analyses procedure”. Journal of Vibroengineering 19(7): 5627-5638. ISSN: 2351-5260. DOI: https://doi.org/10.21595/jve.2017.19275.
  • 8. Gärling Tommy, Dick Ettema, Margareta Friman. 2014. Handbook of sustainable travel. New York, NY, USA: Springer. ISBN: 978-94-007-7033-1. DOI: 10.1007/978-94-007-7034-8.
  • 9. Kos Barbara, Grzegorz Krawczyk, Robert Tomanek. 2018. Modelowanie mobilności w miastach. Katowice: Publishing House of the University of Economics. [In Polish: Modeling mobility in cities]. ISBN: 978-83-7875-431-2.
  • 10. Sahu Prasanta K., Babak Mehran, Surya P. Mahapatra, Satish Sharma. 2021. „Spatial data analysis approach for network-wide consolidation of bus stop locations”. Public Transport.
  • 11. Wu Jingxian, MinYang, Soora Rasouli, Chengcheng Xu. 2016. „Exploring Passenger Assessment of Bus Service Quality Using Bayesian Networks”. Journal of Public Transportation 19(3): 36-54. ISSN: 1077-291X. DOI: http://doi.org/10.5038/2375-0901.19.3.3.
  • 12. Rashedi Zohreh, Md Sami Hasnine, Khandker Nurul Habib. 2021. „Modelling second-best choices from the choice-based sample: revelation of potential mode-switching behaviour from transit passenger surveys”. Public Transport.
  • 13. Tome Andre, Bertha Santos, Carmen Carvalheira. 2019. "GIS-Based Transport Accessibility Analysis to Community Facilities in Mid-Sized Cities". IOP Conference Series: Materials Science and Engineering 471(6). IOP Publishing. DOI: 10.1088/1757-899X/471/6/062034.
  • 14. Chen Yuan, Ahmed Bouferguene, Yinghua Shen, Mohamed Al-Hussein. 2019."Assessing accessibility-based service effectiveness (ABSEV) and social equity for urban bus transit: A sustainability perspective". Sustainable Cities and Society 44: 499-510.
  • 15. Sobota Aleksander, Ryszard Janecki, Grzegorz Karoń, Renata Żochowska, et al. 2015. Zintegrowany System Zarządzania Transportem na obszarze miasta Bielska-Białej, etap I-wykonanie Modelu Ruchu dla miasta Bielsko-Biała. Praca NB-148/RT5/2014. Katowice: Faculty of Transport of the Silesian University of Technology. [In Polish: Integrated Transport Management System in the area of the city of Bielsko-Biała, stage I - development of the Travel Model for the city of Bielsko-Biała. Work NB-148/RT5/2014].
  • 16. Jacyna Marianna. 2009. Wybrane zagadnienia modelowania systemów transportowych. Warsaw: Publishing House of the Warsaw University of Technology. [In Polish: Selected issues of modeling transport systems]. ISBN: 978-83-7207-817-9.
  • 17. Ceder Avishai. 2016. Public transit planning and operation. Modeling, Practice and Behavior. Taylor & Francis Group. ISBN: 9780429100246. DOI: https://doi.org/10.1201/b18689.
  • 18. Faron Aleksandra. 2018. „Wpływ dostępności pieszej oraz lokalizacji przystanku kolejowego na jego potencjał pasażerski”. Transport Miejski i Regionalny 5: 12-17. [In Polish: Faron Aleksandra. 2018. „The impact of pedestrian accessibility and the location of the railway station on its passenger potential”]. ISSN: 1732-5153.
  • 19. Transit capacity and quality of service manual. Third edition. 2013. TCRP Report 165. Transportation Research Board. ISSN: 1073-4872. ISBN: 978-0-309-28344-1. DOI: https://doi.org/10.17226/24766.
  • 20. Burke Matthew, Lex Brown. 2007. “Distances people walk for transport”. Road & Transport Research 16(3): 16-29. ISSN: 1037-5783.
  • 21. Soczówka Piotr, Renata Żochowska, Aleksander Sobota, Marcin Jacek Kłos. 2020. “Wpływ czynników związanych z podróżą na czas dojścia do przystanku publicznego transportu zbiorowego”. Transport Miejski i Regionalny 2: 7-13. [In Polish: “Influence of travel factors on the travel time to a public collective transport stop”]. ISSN: 1732-5153.
  • 22. Daniels Rhonda, Corinne Mulley. 2013. “Explaining walking distance to public transport: the dominance of public transport supply”. Journal of Transport and Land Use 6(2): 5-20. ISSN: 1938-7849.
  • 23. Ivan Igor, Jiri Horak, Lenka Zajickova, Jaroslav Burian, David Fojtik. 2019. “Factors influencing walking distance to preferred public transport stop in selected urban centres of Czechia”. GeoScape 13(1): 16-30. ISSN: 1802-1115. DOI: https://doi.org/10.2478/geosc-2019-0002.
  • 24. Wibowo Sony Sulaksono, Piotr Olszewski P. 2005. “Modeling walking accessiblity to public transport terminals: case study of Singapore mass rapid transit”. Journal of the Eastern Asia Society for Transportation Studies 6: 147-156. ISSN: 1881-1124. DOI: 10.11175/EASTS.6.147.
  • 25. Estupinan Nicolas, Daniel A. Rodriguez. 2008. “The relationship between urban form and station boardings for Bogota’s BRT”. Transportation Research Part A: Policy and Practice 42(2): 296-306. ISSN: 0965-8564. DOI: https://doi.org/10.1016/j.tra.2007.10.006.
  • 26. Sobczyk Mieczysław. 2010. Statystyka opisowa. Warsaw: C.H. Beck. [In Polish: Descriptive statistics]. ISBN: 978-83-255-1607-9.
  • 27. Local Data Bank. Available at: http://bdl.stat.gov.pl.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-f0ab1b4e-5d0d-42ff-a1a9-dc0bd888a8e0
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