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2016, vol. 44, br. 2, str. 204-211
Pregled višekriterijumske optimizacije u transportu kontejnera korišćenjem kombinovanih morskih i kopnenih transportnih lanaca
aUniverzitet u Beogradu, Mašinski fakultet, Inovacioni centar, Srbija
bUniverzitet u Beogradu, Mašinski fakultet, Srbija
cUniversity of Montenegro, Maritime faculty, Montenegro

e-adresarrajkovic@mas.bg.ac.rs
Projekat:
Razvoj softvera i nacionalne baze podataka za strateško upravljanje razvojem transportnih sredstava i infrastrukture u drumskom, železničkom, vazdušnom i vodnom saobraćaju primenom evropskih transportnih mrežnih modela (MPNTR - 36027)

Ključne reči: intermodal transport; container flows; multi-objective; optimization
Sažetak
Intermodalni transport je sistem koji podrazumeva prevoz 'od vrata do vrata' pod odgovornošću jednog prevoznika tj. operatora intermodalnog transporta, uz učešće najmanje dva vida transporta (u prevozu tereta bez promene tovarno manipulativne jedinice). Kontejnerski transport je glavna komponenta intermodalnog transporta i međunarodne trgovine. Kontejnerski transportni tok bi trebalo da bude optimalan kako bi se osiguralo pravilno korišćenje resursa i kako bi se omogućila profitabilnost korisnika. Razni višekriterijumski evolucioni algoritmi su razvijeni da efikasno reše probleme optimizacije u kontejnerskom transportu. Ovaj rad predstavlja kratak pregled problema optimizacije u intermodalnom transportu posmatrajući jedan transportni lanac u kome se transport kontejnera obavlja morem i kopnom uzimajući u obzir tri najčešće razmatrana optimizaciona kriterijuma (transportni troškovi, tranzitno vreme i emisija ugljen-dioksida).
Reference
*** (2013) Review of maritime transport: UNCTAD/RMT. United National Publication, Sales no. E.13.II.D.9, ISBN 978-92-1-112872-7, e-ISBN 978-92-1-054195-4, ISSN 0566-7682
Arnone, M., Mancini, S., Rosa, A. (2014) Formulating a Mathematical Model for Container Assignment Optimization on an Intermodal Network. Procedia - Social and Behavioral Sciences, 111: 1063-1072
Bell, M.G.H., Liu, X., Angeloudis, P., Fonzone, A., Hosseinloo, S.H. (2011) A frequency-based maritime container assignment model. Transportation Research Part B: Methodological, 45(8): 1152-1161
Chang, T. (2008) Best routes selection in international intermodal networks. Computers & Operations Research, 35(9): 2877-2891
Crainic, T.G., Florian, M., Guelat, J., Spiess, H. (1990) Strategic planning of freight transportation: Stan, an interactive-graphical system. Transportation Research Record, 1283, pp. 97-124
Crainic, T.G., Kim, K.H. (2007) Chapter 8 Intermodal Transportation. u: C. Barnhart and G. Laporte [ur.] Handbooks in Operations Research and Management Science, Vol. 14, pp. 467-537
Deo, N., Pang, C. (1984) Shortest-path algorithms: Taxonomy and annotation. Networks, 14(2): 275-323
Festa, P. Shortest Path Algorithms. u: M.G.C. Resende & P.M. Pardalos [ur.] Handbook of Optimization in Telecommunications, str. 185-210
Francesetti, D.C. (2005) Italian versus Northern Range port competitiveness: A transportation cost analysis in Chinese trade. European Transport \ Trasporti Europei, Vol. 30, pp. 37-53
Gallo, G., Pallottino, S. (1986) Shortest path methods: A unifying approach. u: Mathematical Programming Studies, Vol. 26, pp. 38-64
Han, M.M., Guolong, L., Bin, Y. (2011) A linear programming model for short sea shipping and multi-modal inland transportation in Myanmar. Report and Opinion, Vol. 3, Issue 1, pp. 37-43
Harker, P.T., Friesz, T.L. (1986) Prediction of intercity freight flows, I: Theory. Transportation Research Part B: Methodological, 20(2): 139-153
Harker, P.T., Friesz, T.L. (1986) Prediction of intercity freight flows, II: Mathematical formulations. Transportation Research Part B: Methodological, 20(2): 155-174
Hillier, F.S., Lieberman, G.J. (2005) Introduction to operations research. New York: McGraw-Hill
Infante, D., Paletta, G., Vocaturo, F. (2009) A ship-truck intermodal transportation problem. Maritime Economics & Logistics, 11(3): 247-259
Jula, P., Leachman, R.C. (2011) Long- and Short-Run supply-chain optimization models for the allocation and congestion management of containerized imports from Asia to the United States. Transportation Research Part E: Logistics and Transportation Review, 47(5): 593-608
Kim, H., Chang, Y., Lee, P.T.-W., Shin, S., Kim, M. (2008) Optimizing the transportation of international container cargoes in Korea. Maritime Policy & Management, 35(1): 103-122
Kim, N., Janic, M., van Wee, B. (2009) Trade-Off Between Carbon Dioxide Emissions and Logistics Costs Based on Multiobjective Optimization. Transportation Research Record: Journal of the Transportation Research Board, 2139: 107-116
Lam, J.S.L., Gu, Y. (2013) Port hinterland intermodal container flow optimisation with green concerns: a literature review and research agenda. International Journal of Shipping and Transport Logistics, 5(3): 257
Miettinen, K. (1999) Nonlinear multi objective optimization. Boston: Kluwer Academic Publishers
Min, H. (1991) International intermodal choices via chance-constrained goal programming. Transportation Research Part A: General, 25(6): 351-362
Mostert, M., Limbourg, S. (2014) A bi-objective model for intermodal transport. u: The 5th International Conference on Information Systems, Logistics and Supply Chain CONNECTING WORLDS ILS, Breda, Proceedings of
Newman, A.M., Yano, C.A. (2000) Scheduling Direct and Indirect Trains and Containers in an Intermodal Setting. Transportation Science, 34(3): 256-270
Novikova, K.K.A., Jing, L., Kennedy, R.O. (2013) A Multi-objective Optimization of Sino-Kazakh Container Flow through Dostyk-Alashankou. International Journal of Business, Humanities and Technology, Vol. 3, No. 7, pp. 37-47
Rajkovic, R., Zrnic, N., Stakic, Dj. (2014) Application of mathematical model for container transport flow of goods: From far east to Serbia. u: The International Conference on Industrial Logistics, 11-13.06, Brac, Croatia Proceeding of, pp. 75-82
Rajkovic, R., Zrnic, N., Stakic, Đ., Mahnic, B. (2015) The Costs of Container Transport Flow Between Far East and Serbia Using Different Liner Shipping Services. Logistics & Sustainable Transport, 6(1)
Rodrigue, J.P., Slack, B. (2006/2013) Intermodal transportation and containerization. u: Rodrigue J.P., Comtois C., Slack B. [ur.] The Geography of Transport Systems, Milton Park, Abingdon, Oxon: Routledge, Published by 2 Park Square, OX14 4RN, pp. 416
Schneider, O. (2011) A conceptual model to facilitate sustainable: Multi-modal transportation networks between Thailand and Europe. BAWiSo-IBW, pp. 1-45
Spiess, H., Florian, M. (1989) Optimal strategies: A new assignment model for transit networks. Transportation Research Part B: Methodological, 23(2): 83-102
Winebrake, J.J., Corbett, J.J., Falzarano, A., Hawker, J. S., Korfmacher, K., Ketha, S., Zilora, S. (2008) Assessing Energy, Environmental, and Economic Tradeoffs in Intermodal Freight Transportation. Journal of the Air & Waste Management Association, 58(8): 1004-1013
Xue, Y., Irohara, T. (2010) A time-space network based international transportation scheduling problem incorporating CO2 emission levels. Journal of Zhejiang University Science A, 11(12): 927-932
Yang, X., Low, J.M.W., Tang, L.C. (2011) Analysis of intermodal freight from China to Indian Ocean: A goal programming approach. Journal of Transport Geography, 19(4): 515-527
 

O članku

jezik rada: engleski
vrsta rada: neklasifikovan
DOI: 10.5937/fmet1602204R
objavljen u SCIndeksu: 25.06.2016.
Creative Commons License 4.0

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