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Problems of modelling of ITS services in transportation models

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Paper presents important issues related to macroscopic/strategic transportation modelling for ITS projects – utility function and perceived travel time for mode choice in macroscopic model.
Rocznik
Strony
30--34
Opis fizyczny
Bibliogr. 31 poz.
Twórcy
autor
  • SILESIAN UNIVERSITY OF TECHNOLOGY, Faculty of Transport, Krasinskiego 8, Katowice, Poland
autor
  • KATOWICE SCHOOL OF TECHNOLOGY, Rolna 43, Katowice, Poland
Bibliografia
  • [1] Architecture Development Team for Research and Innovation Technology Administration (RITA), National ITS Architecture. Service Packages. US Department of Transportation Washington D.C., 2012
  • [2] National ITS Architecture 7.1, http://local.iteris.com/itsarch/ [date of access: 12.02.2017]
  • [3] European Intelligent Transport System (ITS) Framework Architecture (E-FRAE), http://frame-online.eu/ [date of access: 12.02.2017]
  • [4] Systems Engineering Guidebook for Intelligent Transportation Systems. U.S. Department of Transportation. November 2009
  • [5] KAROŃ G., MIKULSKI J.: Expertise of The Concept and Architecture of the Intelligent Traffic Management System (ITS) for the Territory of the Public Transport Operator in Upper Silesian Industrial Region. Report of Research Work for Municipal Transport Union of the Upper Silesian Industrial District (KZK GOP). Katowice, Poland 2015
  • [6] KAROŃ G., MIKULSKI J.: Forecasts for Technical Variants of ITS Projects – Example of Upper-Silesian Conurbation, in Mikulski J. (ed) Activities of Transport Telematics, Springer Verlag, Berlin Heidelberg, CCIS 395 (2013), pp. 67-74
  • [7] ŻOCHOWSKA R., KAROŃ G.: ITS services packages as a tool for managing traffic congestion in cities, in: Sładkowski, A., Pamuła, W. (ed.) Intelligent transportation systems - problems and perspectives. Studies in Systems, Decision and Control, vol. 32, pp. 81-103. Springer International Publishing Switzerland (2016)
  • [8] KAROŃ G., ŻOCHOWSKA R.: Modelling of expected traffic smoothness in urban transportation systems for ITS solutions. Archives of Transport. Vol. 33, Issue 1, pp. 33-45 Polish Academy of Sciences Committee of Transport, Warsaw 2015
  • [9] ŻOCHOWSKA R.: Selected Issues in Modelling of Traffic Flows in Congested Urban Networks. Archives of Transport. Vol. 29, Issue 1, pp. 77-89 Polish Academy of Sciences Committee of Transport, Warsaw 2014
  • [10] CASCETTA E.: Transportation systems analysis. Models and applications. 2nd Edition. Springer Optimization and Its Application, Vol.29, New York 2009
  • [11] ORTUZAR J.DE D., WILLUMSEN L.G.: Modelling Transport (third edition), Wiley&Sons, LTD. Chichester, England (2001)
  • [12] KAROŃ G., JANECKI R.: Development of various scenarios of ITS systems for urban area. In: Sierpinski, G. (eds.) Intelligent transport systems and travel behaviour. Advances in Intelligent Systems and Computing, vol. 505, pp. 3-12. Springer International Publishing Switzerland 2017
  • [13] MAŁECKI K., IWAN, S., KIJEWSKA K.: Influence of Intelligent Transportation Systems on Reduction of the Environmental Negative Impact of Urban Freight Transport Based on Szczecin Example, Elsevier, Procedia Social and Behavioral Sciences, vol. 151, 2014, pp. 215-229
  • [14] JACYNA M., et al.: Simulation model of transport system of Poland as tool for developing sustainable transport. Archives of Transport vol. 31, Iss. 3 pp. 23-35 Warsaw University of Technology 2014
  • [15] JACYNA-GOŁDA I., ŻAK J., GOŁĘBIOWSKI P.: Models of traffic flow distribution for various scenarios of the development of proecological transport system. Archives of Transport vol. 32, Iss. 4 pp.17-28 Warsaw University of Technology 2014
  • [16] MAHMASSANI H.S., TALEBPOUR A.: Influence of connected and autonomous vehicles on traffic flow stability and throughput. Transportation Research Part C 71 (2016) 143–163. Elsevier Ltd. October 2016
  • [17] CELIŃSKI I., et al.: The Analysis of Travellers Behaviour in the Upper Silesian Conurbation, Archives of Transport, Vol. XXIV, No 4/2012, pp. 441-461
  • [18] KAROŃ G., MIKULSKI J.: Problems of Systems Engineering for ITS in Large Agglomeration – Upper-Silesian Agglomeration in Poland, in Mikulski J. (ed) Telematics - Support for Transport, Springer Verlag, Berlin Heidelberg, CCIS 471 (2014), pp. 242-251
  • [19] KAROŃ G., MIKULSKI J.: Problems of ITS Architecture Development and ITS architecture implementation in Upper- Silesian Conurbation in Poland, in Mikulski J. (ed) Telematics in the Transport Environment, Springer Verlag, Berlin Heidelberg, CCIS 329 (2012), pp. 183-198
  • [20] BOYCE D., WILLIAMS H.: Forecasting Urban Travel. Past, Present and Future. Edward Elgar Publishing, Cheltenham, UK, Northampton, MA, USA 2015
  • [21] Cambridge Systematics, Inc. 1996. Travel Survey Manual. Department of Transportation. Washington, D.C. Local Government, Washington
  • [22] Department of Transport. 2016. “National Travel Survey: England 2015”. Available at: https://www.gov.uk/government/uploads/system/uploads/attachment_data/file/551437/national-travel-survey-2015.pdf. [date of access: 15.05.2017]
  • [23] Statistics Canada. 2010. Survey Methods and Practices. Catalogue no. 12-578-X. Ottawa
  • [24] Transportation Research Board. 2007. Metropolitan Travel Forecasting. Current Practice and Future Direction. Special Report 288. Washington, D.C
  • [25] KAROŃ G., et al.: The Methodology and Detailed Concept of Traffic Surveys and Measurements and Transportation Model Development for the Territory of the Public Transport Operator in Upper Silesian Industrial Region (in Poland). Report of Research Work for Municipal Transport Union of the Upper Silesian Industrial District (KZK GOP). Katowice, Poland 2016
  • [26] KAROŃ G., MIKULSKI J.: Functional Configuration of ITS for Urban Agglomeration, in Mikulski J. (ed) Smart Solutions in Today’s Transport, Springer Verlag, Berlin Heidelberg, CCIS 715 (2017), pp. 55-69
  • [27] KAROŃ G., MIKULSKI J.: Selected problems of ITS Project Development – Concept Exploration and Feasibility Study, in Mikulski J. (ed) Smart Solutions in Today’s Transport, Springer Verlag, Berlin Heidelberg, CCIS 715 (2017), pp. 1-15
  • [28] KAROŃ G., MIKULSKI J.: Structure of Transport Model on Strategic Level of Management for Assessment of ITS Configuration. Journal of KONES Powertrain and Transport. Vol. 24, No. 3, 2017
  • [29] ŻOCHOWSKA R., et al.: Selected Aspects of the Methodology of the Household Interview Survey on an Urban Agglomeration Scale with Regard to ITS Services. Scientific Journal of Silesian University of Technology. Series Transport, vol. 95, pp. 239-249
  • [30] KAROŃ G., et al.: Selected Aspects of the Methodology for Delimitation of the Area of Urban Agglomeration in Transportation Models for the Evaluation of ITS Projects. In: Sierpiński G. (eds) Advanced Solutions of Transport Systems for Growing Mobility. TSTP 2017. Advances in Intelligent Systems and Computing, vol 631, Springer, Cham 2018, pp. 243-254
  • [31] ŻOCHOWSKA R., et al.: Selected Aspects of the Methodology of Traffic Flows Surveys and Measurements on an Urban Agglomeration Scale with Regard to ITS Projects. In: Macioszek E., Sierpiński G. (eds) Recent Advances in Traffic Engineering for Transport Networks and Systems. TSTP 2017. Lecture Notes in Networks and Systems, vol 21, Springer, Cham 2018, pp. 37-49
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-7cf02583-43fc-4f6b-9dcf-090292092e21
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