Problems of digitalization of inland water transport
Abstract
The article defines the main directions for the formation of a digital platform and the key principles of the goal of implementing digitalization in relation to inland water transport. A systematic approach to the analysis of the problems of digitalization of inland waterway transport is proposed, including a set of graphical and matrix models characterizing this sub-sector of transport and logistics. The main components of the concept "Smart inland water transport" are considered and outlined. Considering this, promising directions for the development of information and telecommunication and intelligent services for inland water transport are formulated. A SWOT analysis of the digitalization of the industry was also carried out, as a result of which management strategies in inland water transport were proposed taking into account the identified strengths and weaknesses, opportunities and threats. In the final part of paper basic aspects of introduction of active information systems during inland water transport digitalization, structure of such systems and problems of their creation and functioning are considered. The presented models allow us to characterize and visualize the problems of the formation of "end-to-end" technologies of inland water transport, as part of the problems of the digital economy, to outline the directions of integration of information resources and approaches to "expanded" organizations, including all those interested in the implementation of relevant transport services.
References
Ганчеренок И., Горбачев Н. Глобализация 4.0. Ответ системы образования. Mauritius: Palmarium Academic Publishing, 2019. 112 c.
Ганчерёнок И.И., Горбачёв Н.Н., Вильданова Л.А., Темирова Ф.С. Кадровое обеспечение цифровой трансформации: кадры или таланты // Экономика, управление, право, образование в XXI веке: проблемы, тенденции и перспективы развития. Материалы VI Международной научно-практической конференции, 30 апреля 2020 г. / отв. ред. И.А. Тихонова, А.А. Цененко; ф-л Моск. ун-та им. С.Ю. Витте в г. Рязани [Электронное издание]. М.: Изд. ЧОУВО «МУ им. С.Ю. Витте», 2020. С. 5-20. https://doi.org/10.31453/kdu.ru.978-5-7913-1143-6-2020-190-203
Ганчерёнок И.И., Горбачёв Н.Н. Нелинейное управление. Ситуационный анализ. Mauritius: Palmarium Academic Publishing, 2019. 381 с.
Giannopoulos G., Mitsakis E., Salanova J.M. Overview of Intelligent Transport Systems (ITS) developments in and across transport modes, Luxembourg: Publications Office of the European Union, 2012, 34 p.
Jain A., Van der Heijden R., Marchau V., Bruckmann D. Towards Rail-Road Online Exchange Platforms in EU-Freight Transportation Markets: An Analysis of Matching Supply and Demand in Multimodal Services, Sustainability, 2020, Vol. 12. https://doi.org/10.3390/su122410321
Jarašūnienė A., Batarlienė N., Vaičiūtė K. Application and Management of Information Technologies in Multimodal Transportation, Procedia Engineering, 2016, Vol. 134, pp. 309-315. https://doi.org/10.1016/j.proeng.2016.01.012
Niculescu M.C., Minea M. Developing a single window integrated platform for multimodal transport management and logistics, Transportation Research Procedia, 2016, Vol. 14, pp. 1453-1462. https://doi.org/10.1016/j.trpro.2016.05.219
Tavasszy L. Innovation and technology in multimodal supply chains, International Transport Forum Discussion Paper, 2021, No. 2018-18,
Bobrova V., Berezhnaya L. Digitization of the transport industry in Russia: problems and prospects, Advances in Economics, Business and Management Research, 2019, Vol. 81, pp. 174-177.
Gattuso D., Pellicanò D.S. Advanced methodological researches concerning ITS in freight transport, Procedia - Social and Behavioral Sciences, 16th Meeting of the EURO Working Group on Transportation, 2014, no. 111, pp. 994-1003. https://doi.org/10.1016/j.sbspro.2014.01.134
Vasilenko M., Kuzina E., Bespalov V., Drozdov N., Tagiltseva J., Korenyakina N., Prokopchuk V., Nadolinsky P. Digital technologies in quality and efficiency management of transport service, XXII International Scientific Conference Energy Management of Municipal Facilities and Sustainable Energy Technologies (EMMFT-2020), 2021, Vol. 244. https://doi.org/10.1051/e3sconf/202124411046
Dmitriev A., Plastunyak I. Integrated digital platforms for development of transport and logistics services, Atlantis Highlights in Computer Sciences, 2019, Vol. 1, pp. 136-141. https://doi.org/10.2991/icdtli-19.2019.27
Sarma H. Turning the international North-South corridor into a “digital corridor”, Comparative Politics Russia, 2018, Vol. 9, No.4, pp. 124-138.
Фёдоров И. Г. Моделирование бизнес-процессов в нотации BPMN2.0: монография. М.: МЭСИ. 2013. 255 с.
Горбачёв Н.Н., Валентей С.М. Сценарное управление ситуационным центром // Развитие информатизации и государственной системы научно-технической информации (РИНИТИ-2016:доклады XV Международной конференции, Минск, 17 ноября 2016 г.). Минск: ОИПИ НАН Беларуси, 2016. С. 67-73.
Горбачёв Н.Н. Активные информационные системы в ситуационно-аналитических центрах // Развитие информатизации и государственной системы научно-технической информации (РИНИТИ-2019): доклады XVIII Международной конференции, Минск, 21 ноября 2019 г. Минск: ОИПИ НАН Беларуси, 2019. С. 101-105.
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