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Pilot study of Industry 4.0 and digital technology prevalence in Russian manufacturing companies

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Języki publikacji
EN
Abstrakty
EN
The spread of digital technologies dramatically changes production processes. The fourth industrial revolution opens up new opportunities for the introduction of technologies, having a significant impact on the production cycle, starting with highly automated production lines and ending with the large-scale implementation of technological solutions designed to improve productivity, optimize costs, quality and reliability. Defining digital transformations, primarily in the manufacturing industry, as a strategic imperative for the entire economy based on opinions and intentions of entrepreneurs (short and medium-term), key aspects of the digitalization process in Russian medium, high-tech and low-tech manufacturing industries are revealed. A set of tendencies in the development of digital technologies by their main types is presented, the level of industry participation in digital transformation is shown, as well as many other important digital transformation processes in enterprises that are not measured by quantitative statistics.
Twórcy
autor
  • National Research University Higher School of Economics, Institute for Statistical Studies and Economics of Knowledge, Centre for Business Tendency Studies, Slavyanskaya Sq. 4, Bld. 2, Moscow, Russian Federation
autor
  • National Research University Higher School of Economics, Institute for Statistical Studies and Economics of Knowledge, Centre for Business Tendency Studies, Russian Federation
Bibliografia
  • [1] Digital Transformation Initiative. Executive Summary, World Economic Forum, 2018, http://reports.weforum.org/digital-transformation/wp-content/blogs.dir/94/mp/files/pages/files/dtiexecutive-summary-20180510.pdf (date last accessed 22.07.19).
  • [2] Fourth Industrial Revolution: Beacons of Technology and Innovation in Manufacturing. White paper, World Economic Forum, 2019, http://www3.weforum.org/docs/WEF 4IR Beacons of Technology and Innovation in Manufacturing report 2019.pdf (date last accessed 22.07.19).
  • [3] Industry 4.0: the fourth industrial revolution – guide to Industrie 4.0, i-SCOOP, 2018, https://www.i-scoop.eu/industry-4-0/ (date last accessed 22.07.19).
  • [4] Digital transformation in the manufacturing industry: challenges and accelerators, i-SCOOP, 2018a, https://www.i-scoop.eu/digital-transformation/digital-transformation-manufacturing/ (date last accessed 22.07.19).
  • [5] The rise of Digital Challengers. Analytical report, McKinsey & Company, 2018c, https://digitalchallengers.mckinsey.com/files/McKinsey%20CEE%20report_The%20Rise%20of%20Digital%20Challengers.pdf (date last accessed 22.07.19).
  • [6] Novaya tehnologicheskaya revolyuciya: vyzovy i vozmozhnosti dlya Rossii. Analytical report, The Center for Strategic Research, 2017, Moscow, https://csr.ru/wp-content/uploads/2017/10/novayatehnologicheskaya-revolutsiya.pdf (date last accessed 22.07.19).
  • [7] United Nations, 2017, Information Economy Report 2017: Digitalization, Trade and Development, United Nations Conference on Trade and Development publication.
  • [8] OECD, 2017) OECD Digital Economy Outlook 2017, OECD Publishing, Paris.
  • [9] Measuring the Digital Economy, IMF Staff Report, IMF, 2018, Washington, D.C.
  • [10] ICT Development Index 2017, ITU, 2017, http://www.itu.int/net4/itu-d/idi/2017/index.html (date last accessed 22.07.19).
  • [11] Digital Disruption Index, Deloitte, 2019, https://www2.deloitte.com/content/dam/Deloitte/uk/Documents/consultancy/deloitte-uk-digital-disruption-index-2019.pdf (date last accessed 22.07.19).
  • [12] Leaders Place Innovation at the Heart of Digital Transformation. A Consulting Thought Leadership Paper Commissioned by SAP, Forrester, 2019.
  • [13] Agostini L., Filippini R., Organizational and managerial challenges in the path toward Industry 4.0, European Journal of Innovation Management, 3, 406–421, 2019.
  • [14] Tortorella G.L., Fettermann D., Implementation of Industry 4.0 and lean production in Brazilian manufacturing companies, International Journal of Production Research, 8, 2975–2987, 2018.
  • [15] Yunis M., Tarhini A., Kassar A., The role of ICT and innovation in enhancing organizational performance: The catalysing effect of corporate entrepreneurship, Journal of Business Research, pp. 344–356, 2018.
  • [16] Russo M., Digital transformation in the automotive supply chain: China, Germany, Italy and Japan in a comparative perspective, Department of Economics 0151, University of Modena and Reggio E., Faculty of Economics “Marco Biagi”, 2019.
  • [17] Mićić L., Digital transformation and its influence on GDP, Economics, 2, 135–147, 2017.
  • [18] Bieser J.C., Hilty L.M., Indirect effects of the digital transformation on environmental sustainability: methodological challenges in assessing the greenhouse gas abatement potential of ICT, [in:] ICT4S, pp. 68–81, 2018.
  • [19] Basl J., Pilot study of readiness of Czech companies to implement the principles of Industry 4.0, Management and Production Engineering Review, 2, 3– 8, 2017.
  • [20] Bley K., Leyh C., Schäffer T., Digitization of German enterprises in the production sector – Do they know how “digitized” they are?, 2016, https://www.researchgate.net/publication/305661673 Digitization of German Enterprises in the Production Sector - Do they know how digitized they are (accessed August 21, 2019).
  • [21] Bogner E., Voelklein T., Schroedel O., Franke J., Study based analysis on the current digitalization degree in the manufacturing industry in Germany, Procedia CIRP, pp. 14–19, 2016.
  • [22] Statistical Classification of Economic Activities in the European Community Rev. 2, Eurostat, 2008, https://ec.europa.eu/eurostat/documents/3859598/5902521/KS-RA-07-015-EN.PDF (date last accessed 22.07.19).
  • [23] Promyshlennoe razvitie i SNG: est’ li usloviya dolya narashchivaniya potenciala reindustrializacii? Analiticheskij otchet [Industrial development and the CIS: are there conditions for increasing the potential of re-industrialization? Analytical report], UNIDO, 2017, Statistika Rossii, Moscow.
  • [24] Upadhyaya S., Kitrar L., Ostapkovich G., Lipkind T., The main vectors of cross-border development in the CIS industrial and economic space: Convergence, potential and cross-countries gaps, [HSE working papers], 2016, https://www.hse.ru/data/2016/05/16/1128810172/60STI2016.pdf (date last accessed 22.07.19).
  • [25] Kitrar L., Upadhyaya Sh., Gumeniuk K., Ostapkovich G., Lipkind T., Industrial Development in the CIS: Re-industrialization Trends and Potential, UNIDO working papers, 2016, http://www.unido.org/fileadmin/user_media/Research_and_Statistics/WP_2015/working_paper_20_covers.pdf (date last accessed 22.07.19).
  • [26] Digital America: a Tale of the Haves and Havemores, McKinsey Global Institute (MGI) report, McKinsey & Company, 2015.
  • [27] Gosudarstvennaya informacionnaya sistema markirovki tovarov [State information system for marking goods], TAdviser, 2018, http://www.tadviser.ru/index.php/Статья:Государственная_ин-формациовная_систсма_маркировки_товарову#2014:_.D0.A0.D0.B5.D1.88.D0.B5.D0.BD.D0.B8.D0.B5_.D0.95.D0.90.D0.AD.D0.A1_.D0.BE_.D1.81.D0.BE.D0.B7.D0.B4.D0.B0.D0.BD.D0.B8.D0.B8_.D1.81.D0.B8.D1.81.D1.82.D0.B5.D0.BC.D1.8B.2C_.D0.A4.D0.9D.D0.A1_.D0.A0.D0.BE.D1.81.D1.81.D0.B8.D0.B8_.D0.BE.D0.BF.D0.B5.D1.8 (date last accessed 22.07.19).
  • [28] Rauch E., Unterhofer M., Dallasega P., Industry sector analysis for the application of additive manufacturing in smart and distributed manufacturing systems, Manufacturing Letters, 15, 126–131, 2018.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-81a274a3-8948-481c-a57c-d408ebdcd654
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