The authors developed a model for predicting and assessing the efficiency of railway transport from the border of one state to the border of the other one, taking into account all expenditures by the net present value indicator net present value of discounted cash flow. The results allows planning measures to accelerate the cargo delivery, both on the territory of Ukraine, and during the transfer of cargoes at border stations, to predict the revenue generation from the implementation of international transportation, which is very important for attracting investments.
The best practice of increasing the efficiency of international transport in the Eurasian space. Documents and Leaflets of OSJD, 2014, http://osjd.org/dbmm/download?vp=51&load=y&col_id=2066&id=1883 (last visited 8 December 2018).
Horvat F. , Fischer S. Magistrale for Europe, (in Hungarian), Közlekedésépítési Szemle, Vol. 59, No. 5, 2009, pp. 33–37.
Fischer S. Traction energy consumption of electric locomotives and electric multiple units at speed restrictions, Acta Technica Jaurinensis, Vol. 8, No. 3, 2015, pp. 240–256.
Fischer S. Comparison of railway track transition curves, Pollack Periodica, Vol. 4, No. 3, 2009, pp. 99–110.
Demin Ju. Scientific and technical support of sustainable development of transportations in the directions ‘East-West’, (in Russian), Railway Transport of Ukraine, Vol. 2, 2018, pp. 14–17.
Pittman R. Reforming and restructuring Ukrzaliznytsia: a crucial task for Ukrainian reformers, Science and Transport Progress, Bulletin of Dnipropetrovsk National University of Railway Transport, Vol. 1, No. 67, 2017, pp. 34–50.
Kurhan M. , Kurhan D. Problems of providing international railway transport, 7th International Scientific Conference “Reliability and Durability of Railway Transport Engineering Structures and Buildings, Kharkiv, Ukraine, 14–16 November 2018 MATEC Web Conf., Vol. 230, Paper No. 01007, pages 6.
Kurhan M. , Kurhan D. The effectiveness evaluation of international railway transportation in the direction of ‘Ukraine - European Union’, Transport Means 2018, Proceedings of the 22nd International Scientific Conference, Trakai, Lithuania, 3–5 October 2018, Pt. I, pp. 145–150.
Kovács G. , Yusupova N., Smetanina O., Rassadnikova E. Methods and algorithms to solve the vehicle routing problem with time windows and further conditions, Pollack Periodica, Vol. 13, No 3, 2018, pp. 65–76.
Jacyna M. , Wasiak M., Lewczuk K., Klodawski M. Simulation model of transport system of Poland as a tool for developing sustainable transport, Archives of Transport, Vol. 31, No. 3, 2015, pp. 23–35.
Tarapata Z. Modeling and analysis of transportation networks using complex networks: Poland case study, Archives of Transport, Vol. 36, No. 4, 2015, pp. 55–65.
Botalova A. , Eemlyanov A. Practice of making investment decisions in companies: foreign experience, (in Russian), Corporate Finance, Vol. 2, No. 14, 2010, pp. 76–83.
International railway transit tariff (Tariff 8100), 2018, Official Edition of OSJD, http://osjd.org/dbmm/download?vp=51&load=y&col_id=2066&id=2910 (last visited 8 December 2018).
Kuzmenko A. Improving the efficiency of the operation of docking stations of different widths due to the introduction of logistic technologies, (in Ukrainian), University of Customs and Finance, Vol. 2, No. 50, 2013, pp. 102–110.
Szkoda M , Tulecki A. Decision models in effectiveness evaluation of Europe-Asia transportation systems, The 8th World Congress on Railway Research, WCRR 2008, Seul, Korea, 18–22 May 2008, Paper No. G3342.