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Traffic congestion level in 10 selected cities of Poland

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Transport has a great impact on human activities but contributes to many negative phenomena occurring in road traffic, for example, road traffic accidents, emission of toxic exhaust fumes into the atmosphere and a high share of cars in road traffic. For the above reasons, many initiatives have been taken in the field of road traffic management and urban logistics. Based on a literature review, it was found that the problem of the phenomenon of traffic congestion in urban areas remains an ongoing issue. In the first part of this article, the theoretical issues of traffic flow and congestion formation in the city road networks were presented. While the second part outlines the situation of transport congestion in 10 Polish cities based on the worldwide TomTom Traffic Index in the years 2008-2018. This study is a brief analysis of the trends relating to transport congestion based on the TomTom Traffic Index in these cities.
Rocznik
Tom
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17--31
Opis fizyczny
Bibliogr. 59 poz.
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autor
  • Faculty of Mechanical Engineering, Lublin University of Technology, Nadbystrzycka 36 Street, 20-618 Lublin, Poland
Bibliografia
  • 1. Arnott Richard, Eren Inci. 2010. „The stability of downtown parking and traffic congestion”. Journal of Urban Economics 68(3): 260-276. ISSN: 0094-1190. DOI: 10.1016/j.jue.2010.05.001.
  • 2. Bańka, Mariusz, Paweł Droździel, Aleksander Nieoczym. 2019. „Lashing methods - mathematical basis of the process of selecting the number of lashings”. In: Proceedings of 23rd International Conference. Transport Means 2019, Proceedings Part 1: 99-103. ISSN: 1822-296 X.
  • 3. Bauza Ramon, Javier Gozálvez. 2013. „Traffic congestion detection in large-scale scenarios using vehicle-to-vehicle communications”. Journal of Network and Computer Applications, 36(5): 1295-1307. ISSN: 1084-8045. DOI: 10.1016/j.jnca.2012.02.007.
  • 4. Bukova Bibiana, Eva Brumercikova, Pavol Kondek. 2016. „Determinants of the EU transport market”. In: Proceedings of the 2016 International Conference on Engineering Science and Management (ESM). Edited by: Cheng W. AER-Advances in Engineering Research 62: 249-252. ISBN: 978-94-6252-218-3. ISSN: 2352-5401. DOI: 10.2991/esm-16.2016.58.
  • 5. Cho Young, John Rice. 2006. „Estimating velocity fields on a freeway from low-resolution videos”. IEEE Transactions on Intelligent Transportation Systems 7(4): 463-469. DOI: 10.1109/TITS.2006.883934.
  • 6. Coifman Benjamin. 2003. „Identifying the onset of congestion rapidly with existing traffic detectors”. Transportation Research Part A: Policy and Practice 37(3): 277-291. ISSN: 0965-8564. DOI: 10.1016/S0965-8564(02)00016-2.
  • 7. Farooq Danish, Tayyab Akram. 2018. „Traffic flow analysis and solutions to ease traffic flow at unsignalized Taxila intersection”. Periodica Polytechnica Transportation Engineering 46(2): 101-107. ISSN: 0303-7800. DOI: 10.3311/PPtr.10415.
  • 8. Flekiewicz Marek, Grzegorz Kubica. 2017. „The influence of selected gaseous fuels on the combustion process in the SI engine”. Transport Problems 12(3): 135-146. ISSN: 1896-0596. DOI: 10.20858/tp.2017.12.3.13.
  • 9. Figlus Tomasz, Tomasz Czachor. 2018. „Preliminary studies of the effect of travelling speed and propulsion type on the sound level in the passenger compartment of a vehicle with a hybrid propulsion system”. In: 11th International Science and Technical Conference Automotive Safety: 1-5. ISBN: 978-1-5386-4579-6. DOI: 10.1109/AUTOSAFE.2018.8373346.
  • 10. HCM Highway Capacity Manual. TRB, National Research Council, Washington, D.C. 2000.
  • 11. Statistics Poland. Available at: https://bdl.stat.gov.pl/BDL/dane/podgrup/tablica.
  • 12. TOMTOM. Available at: https://www.tomtom.com/en_gb/trafficindex/.
  • 13. Hudak Martin, Radovan Madlenak. 2016. „The research of driver's gaze at the traffic signs”. In CBU International Conference Proceedings 2016, Innovations in Science and Education: 896-899. DOI: 10.12955/cbup.v4.870.
  • 14. Hurtova Ivana, Marie Sejkorova, Jan Verner, Michal Kucera. 2018. „Preference and area coordination of public transport in modern city”. In: 17th International Scientific Conference Engineering for Rural Development “ERD 2018” 17. Jelgava, Latvia. 23-25 May 2018. DOI: 10.22616/ERDev2018.17.N345.
  • 15. Ignaciuk Piotr, Joanna Rymarz, Andrzej Niewczas. 2015. „Effectiveness of the failure rate on maintenance costs of the city buses”. Journal of KONBIN 3: 99-108. ISSN: 1895-8281. DOI: 10.1515/jok-2015-0043.
  • 16. Jacyna M., J. Merkisz. “Proecological approach to modelling traffic organization in national transport system”. Archives of Transport 2(30): 43-56.
  • 17. Jacyna M., M. Wasiak, K. Lewczuk, M. Kłodawski. 2014. “Simulation model of transport system of Poland as a tool for developing sustainable transport”. Archives of Transport 31(3): 23-35.
  • 18. Jurecki Rafał Stanisław, Tomasz Lech Stańczyk, Marek Jacek Jaśkiewicz. 2017. „Driver's reaction time in a simulated, complex road incident”. Transport 32(1): 44-54. ISSN: 1648-4142. DOI: 10.3846/16484142.2014.913535.
  • 19. Kampf Rudolf, Ondrej Stopka, Iveta Kubasakova, Vladislav Zitricky. 2016. „Macroeconomic evaluation of projects regarding the traffic constructions and equipment”. In: World Multidisciplinary Civil Engineering-Architecture-Urban Planning Symposium 2016, WMCAUS 2016, Procedia Engineering 161: 1538-1544. ISSN: 1877-7058. DOI: 10.1016/j.proeng.2016.08.623.
  • 20. Kan Zihan, Luliang Tang, Mei-Po Kwan, Chang Ren, Dong Liu, Qingquan Li. 2019. „Traffic congestion analysis at the turn level using Taxis' GPS trajectory data”. Computers, Environment and Urban Systems 74: 229-243. ISSN: 0198-9715. DOI: 10.1016/j.compenvurbsys.2018.11.007.
  • 21. Karim Lamia, Abdellah Daissaoui, Azedine Boulmakoul. 2017. „Robust routing based on urban traffic congestion patterns”. Procedia Computer Science 109C: 698-703. ISSN: 1877-0509. DOI: 10.1016/j.procs.2017.05.380.
  • 22. Kerner Boris. 1999. „Congested traffic flow: Observations and theory”. Transportation Research Record. Journal of the Transportation Research Board 1678(1): 160-167. DOI: 10.3141/1678-20.
  • 23. Korsakas Vidas, Mindaugas Melaika, Saugirdas Pukalskas, Paulius Stravinskas. 2017. „Hydrogen addition influence for the efficient and ecological parameters of Heavy-Duty Natural Gas SI engine”. Procedia Engineering 187: 395-401. ISSN: 1877-7058. DOI: 10.1016/j.proeng.2017.04.391.
  • 24. Krause Bernhard, Martin Pozybill. 1997. „Fuzzy logic data analysis of environmental data for traffic control”. In: 6th IEEE International Conference on Fuzzy Systems (FUZZ-IEEE 97), Proceedings of the Sixth IEEE 5th International Conference on Fuzzy Systems I-III: 835-838. ISBN: 0-7803-3797-2.
  • 25. Križanová Anna. 2008. „The current possition and perspectives of the integrated transport systems in Slovak Republic”. Eksploatacja i Niezawodnosc – Maintenance and Reliability 4: 25-27. ISSN: 1507-2711.
  • 26. Križanová Anna, Juraj Kolencik, Gabriela Masarova, Daniel Buc, 2014. „Study of Provided Telecommunication Services on the Selected Market”. In: 2014 2nd International Conference on Economics and Social Science (ICESS 2014), PT 1, Advances in Education Research 61: 98-103. ISSN: 2160-1070.
  • 27. Lizbetin Jan, Ladislav Bartuska. 2017. „The influence of human factor on congestion formation on urban roads”. In: 10th International Scientific Conference Transbaltica 2017, Transportation Science and Technology, Procedia Engineering 187: 206-211. ISSN: 1877-7058. DOI: 10.1016/j.proeng.2017.04.366.
  • 28. Lizbetin Jan, Ladislav Bartuska. 2020. „The issue of addressing the lack of parking spaces for road freight transport in cities - a case study”. Open Engineering 10(1): 209-215. ISSN: 2391-5439. DOI: 10.1515/eng-2020-0025.
  • 29. Lizbetin Jan, Ondrej Stopka. 2016. „Proposal of a roundabout solution with a particular traffic operation”. Open Engineering 6(1): 441-445. ISSN: 2391-5439. DOI: 10.1515/eng-2016-0066.
  • 30. Ľupták Vladimir, Paweł Droździel, Ondrej Stopka, Mária Stopková, Iwona Rybicka. 2019. „Approach Methodology for Comprehensive Assessing the Public Passenger Transport Timetable Performances at a Regional Scale”. Sustainability 13(11): 3532. ISSN: 2071-1050. DOI: 10.3390/su11133532.
  • 31. Machalikova Jaroslava, Marie Sejkorova, Marcela Livorova, Lukas Kocourek, Stefan Corny. 2010. „Possibilities of reducing the consumption of lubricants in traffic”. Edited by Adamec, V., V. Jandova. In: 4th Czech-Slovak Scientific Conference on Transport, Health and Environment: 185-194. Blansko, Czech Republic. November 02-03, 2010. ISBN: 978-80-7399-141-8.
  • 32. Madlenak Radovan, Martin Hudak. 2016. „The research of visual pollution of road infrastructure in Slovakia”. In: 16th International Conference on Transport Systems Telematics. Katowice Ustron, Poland. Mar. 16-19, 2016. Challenge of Transport Telematics. Mikulski J., (Ed.). Communications in Computer and Information Science 640: 415-425. DOI: 10.1007/978-3-319-49646-7_35.
  • 33. Makareviciene Violeta, Jonas Matijosius, Saugirdas Pukalskas, Ricardas Vegneris, Irina Kazanceva, Kiril Kazancev. 2017. „The exploitation and environmental characteristics of diesel fuel containing rapeseed butyl esters”. Transport 28(2): 158-165. ISSN: 1648-4142. DOI: 10.3846/16484142.2013.801364.
  • 34. Mamcarz Piotr, Paulina Droździel, Lucia Madleňáková, Andrzej Sieradzki, Paweł Droździel. 2019. „Level of occupational stress, personality and traffic incidents: Comparative study of public and freight transport drivers”. Transportation Research Procedia 40: 1453-1458. ISSN: 2352-1465. DOI: 10.1016/j.trpro.2019.07.201.
  • 35. Matuszak Zbigniew, Michał Bartosz, Dalibor Barta. 2016. „The application of selected network methods for reliable and safe transport by small commercial vehicles”. Management Systems In Production Engineering 23(3): 198-204. ISSN: 2450-5781. DOI: 10.2478/mspe-09-03-2016.
  • 36. Metz David. 2018. „Tackling urban traffic congestion: The experience of London, Stockholm and Singapore”. Case Studies on Transport Policy 6(4): 494-498. DOI: 10.1016/j.cstp.2018.06.002.
  • 37. Pauer Gabor, Arpad Török. 2019. „Static system optimum of linear traffic distribution problem assuming an intelligent and autonomous transportation system”. Periodica Polytechnica Transportation Engineering 47(1): 64-67. ISSN: 0303-7800. DOI: 10.3311/PPtr.11548.
  • 38. Poliak Milos, Adela Poliakova, Michaela Mrnikova, Patricia Simurkova, Marek Jaśkiewicz, Rafał Jurecki. 2017. „The competitiveness of public transport”. Journal of Competitiveness 9(3): 81-97. ISSN: 1804-171X. DOI: 10.7441/joc.2017.03.06.
  • 39. Poliak Milos, Michaela Mrnikova, Patricia Simurkova, Peter Medvid, Adela Poliakova, Salvador Hernandez. 2018. „Social law in road transport like tool safety road transport”. In: XI International Science-Technical Conference Automotive Safety. Casta – Papiernicka, 18-20 April 2018, Slovakia. IEEE Proceedings Paper. DOI: 10.1109/AUTOSAFE.2018.8373317.
  • 40. Rahman Faysal Ibna. 2020. „Impact of V2V Communication on Eco-Route Choice”. LOGI – Scientific Journal on Transport and Logistics 11(1): 37-45. ISSN: 2336-3037. DOI: 10.2478/logi-2020-0004.
  • 41. Raslavicius Laurencas, Arturas Kersys, Saugirdas Pukalskas, Jonas Bazaras, Janina Jablonskyte, Jurga Ilgakojyte-Bazariene, Rolandas Makaras. 2015. „City transport analysis using the General Motors (GM) microscopic model”. Public Transport 7(2): 159-183. ISSN: 1866-749X. DOI: 10.1007/s12469-014-0094-z.
  • 42. Rievaj Vladimir, Jan Vrábel, Frantisek Synak, Ladislav Bartuśka. 2018. „The effects of vehicle load on driving characteristics”. Advances in Science and Technology Research Journal 12(1): 142-149. ISSN: 2299-8624. DOI: 10.12913/22998624/80896.
  • 43. Rimkus Alfredas, Justas Zaglinskis, Saulius Stravinskas, Paulius Rapalis, Jonas Matijosius, Akos Bereczky. 2019. „Research on the combustion, energy and emission parameters of various concentration blends of hydrotreated vegetable oil biofuel and diesel fuel in a compression-ignition engine”. Energies 12(15): 2978. ISSN: 1996-1073. DOI: 10.3390/en12152978.
  • 44. Rosca Eugen, Aura Rusca, Anamaria Ilie, Florin Rusca. 2010. „Non-motorized transportation - An educational challenge for urban communities”. Theoretical and Empirical Researches in Urban Management 5(8)(17): 5-13.
  • 45. Rusca Florin, Aura Rusca, Eugen Rosca, Mircea Rosca, Oana Dinu, Florian Ghionea. 2019. „Algoritm for traffic allocation when are developed park and ride facilities”. Procedia Manufacturing 32: 936-943. ISSN: 2351-9789. DOI: 10.1016/j.promfg.2019.02.306.
  • 46. Rymarz Joanna, Andrzej Niewczas, Aneta Krzyżak. 2016. „Comparison of operational availability of public city buses by analysis of variance”. Eksploatacja i Niezawodnosc – Maintenance and Reliability 18(3): 373-378. ISSN: 1507-2711. DOI: 10.17531/ein.2016.3.8.
  • 47. Sarkan Branislav, Jozef Gnap, Monika Kiktova. 2019. „The importance of hybrid vehicle in urban traffic in terms of environmental impact”. The Archives of Automotive Engineering – Archiwum Motoryzacji 85(3): 115-122. ISSN: 2084-476X. DOI: 10.14669/AM.VOL85.ART8.
  • 48. Schmidt Marie, Stefan Voss. 2017. „Advanced systems in public transport”. Public Transport 9(1-2) Special Issue: 3-6.
  • 49. Skrucany Tomas, Jan Vrabel, Martin Kendra, Patrik Kazimir. 2017. „Impact of cargo distribution on the vehicle flatback on braking distance in road freight transport”. 18th International Scientific Conference “LOGI 2017” 137: 00054. ISSN: 2261-236X. DOI: 10.1051/matecconf/201713400054.
  • 50. Skrucany Tomas, Martin Kendra, Ondrej Stopka, Sasa Milojevic, Tomasz Figlus, Csaba Csiszár. 2019. „Impact of the electric mobility implementation on the greenhouse gases production in central European countries”. Sustainability 11(18): 4948. ISSN: 2071-1050. DOI: 10.3390/su11184948.
  • 51. Skrucany Tomas, Stefania Semanova, Tomasz Figlus, Branislav Sarkan, Jozef Gnap. 2017. „Energy intensity and GHG production of chosen propulsions used in road transport”. Communications - Scientific Letters of the University of Zilina 19(2): 3-9. ISSN: 1335-4205.
  • 52. Statistical Yearbook of the Republic of Poland, Warsaw 2018.
  • 53. Tsekeris Theodore, Nikolas Geroliminis. 2013. „City size, network structure and traffic congestion”. Journal of Urban Economics 76: 1-14. ISSN: 0094-1190. DOI: 10.1016/j.jue.2013.01.002.
  • 54. Turska Stanislava, Tatiana Corejova, Lucia Madlenakova, Roman Chinoracky. 2019. „Optimization of the delivery process in the urban area”. In: Proceedings of 23rd International Conference. Transport Means 2019, Proceedings Part 2: 809-813. ISSN: 1822-296X.
  • 55. Veternik Milan, Marian Gogola.2017. „Examining of correlation between demographic development of population and their travel behaviour”. Procedia Engineering 192: 929-934. ISSN: 1877-7058. DOI: 10.1016/j.proeng.2017.06.160.
  • 56. Vickrey William S. 1969. „Congestion theory and transport investment”. American Economic Review 59(2): 251-260.
  • 57. Wen, Tzai-Hung, Wei-Chien-Benny Chin, Pei-Chun Lai. 2017. „Understanding the topological characteristics and flow complexity of urban traffic congestion”. Physica A: Statistical Mechanics and its Applications 473: 166-177. ISSN: 0378-4371, DOI: 10.1016/j.physa.2017.01.035.
  • 58. Zefreh Mohammad Maghrour, Adam Török. 2016. „Improving traffic flow characteristics by suppressing shared taxis maneuvers”. Periodica Polytechnica Transportation Engineering 44(2): 69-74. ISSN: 0303-7800. DOI: 10.3311/PPtr.8226.
  • 59. Zheng Jianfeng, Henry X. Liu. 2017. „Estimating traffic volumes for signalized intersections using connected vehicle data”. Transportation Research Part C: Emerging Technologies 79: 347-362. ISSN: 0968-090X. DOI: 10.1016/j.trc.2017.03.007.
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