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Global advanced manufacturing markets - a new opportunity for Russia's technological upgrade

Author

Listed:
  • Simachev, Yu.

    (National Research University "Higher School of Economics", Moscow, Russia)

  • Fedyunina, A.

    (National Research University "Higher School of Economics", Moscow, Russia)

  • Gorodny, N.

    (National Research University "Higher School of Economics", Moscow, Russia)

Abstract

New technologies, including Industry 4.0, are rapidly changing traditional and high-tech industries, and forming the advanced manufacturing sector within the industrial complex. By now Russia has been characterized by a modest presence in the world advanced manufacturing markets - Russia' share is less than 0.6% in certain markets and less than 0.4% in global advanced manufacturing. This is partially explained by the scarce commodity range in the Russian export basket, which determines weak representation of Industry 4.0 goods. Large part in the Russian advanced manufacturing exports is traditional for the Russian economy goods - airplanes, turbojet engines, fuel rods. However, we observe positive structural changes in Russian exports caused by the COVID-19 pandemic. Russia has increased exports of goods with bio- and additive technologies, optoelectronics. It seems that the entry to new advanced manufacturing markets for Russia can form the basis for long-term growth. International experience shows that advanced manufacturing exports are often supported by advanced manufacturing imports. We find that Russian economy significantly underutilizes this channel. Although Russian advanced manufacturing imports are gradually growing, it is focused primarily on final consumer goods. We consider industrial robots as a case of advanced manufacturing imports that deserves special attention as a widespread cross-cutting technology that can significantly transform the technological level of industries. Our estimates show that, although the robotics market in Russia is relatively small and has low growth rates relatively to investment in fixed assets, companies importing industrial robots are larger and more productive. This evidence allows us to determine the import of industrial robotics as one of the priority directions of modernization of the Russian manufacturing. Based on the analysis we identify and discuss three growth opportunities for Russia in global advanced manufacturing: 1) support of exports of services in optoelectronics and ICT through the use of accumulated human capital and competencies and taking into account fast transformation of business models in industry, 2) support of exports of biotechnology products, taking into account positive reputational effects and expanding Russian pharmaceutical exports under the COVID-19 pandemic; 3) support of technology companies in wide number of advanced manufacturing taking into account current favorable environment for the birth of tech startups in Russia.

Suggested Citation

  • Simachev, Yu. & Fedyunina, A. & Gorodny, N., 2022. "Global advanced manufacturing markets - a new opportunity for Russia's technological upgrade," Journal of the New Economic Association, New Economic Association, vol. 53(1), pages 202-212.
  • Handle: RePEc:nea:journl:y:2022:i:53:p:202-212
    DOI: 10.31737/2221-2264-2022-53-1-10
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    References listed on IDEAS

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    1. Maria Bas & Vanessa Strauss-Kahn, 2014. "Does importing more inputs raise exports? Firm-level evidence from France," Review of World Economics (Weltwirtschaftliches Archiv), Springer;Institut für Weltwirtschaft (Kiel Institute for the World Economy), vol. 150(2), pages 241-275, May.
    2. Georg Graetz & Guy Michaels, 2018. "Robots at Work," The Review of Economics and Statistics, MIT Press, vol. 100(5), pages 753-768, December.
    3. Castellani, Davide & Fassio, Claudio, 2019. "From new imported inputs to new exported products. Firm-level evidence from Sweden," Research Policy, Elsevier, vol. 48(1), pages 322-338.
    4. Daron Acemoglu & Claire Lelarge & Pascual Restrepo, 2020. "Competing with Robots: Firm-Level Evidence from France," AEA Papers and Proceedings, American Economic Association, vol. 110, pages 383-388, May.
    5. , & Stiebale, Joel & Woessner, Nicole, 2020. "Robots and the rise of European superstar firms," CEPR Discussion Papers 15080, C.E.P.R. Discussion Papers.
    6. A. Kudrin & E. Gurvich., 2014. "A New Growth Model for the Russian Economy," VOPROSY ECONOMIKI, N.P. Redaktsiya zhurnala "Voprosy Economiki", vol. 12.
    7. Cette, Gilbert & Devillard, Aurélien & Spiezia, Vincenzo, 2021. "The contribution of robots to productivity growth in 30 OECD countries over 1975–2019," Economics Letters, Elsevier, vol. 200(C).
    8. Zimmerling, Amanda & Chen, Xiongbiao, 2021. "Innovation and possible long-term impact driven by COVID-19: Manufacturing, personal protective equipment and digital technologies," Technology in Society, Elsevier, vol. 65(C).
    9. Alessandra Bonfiglioli & Rosario Crinò & Harald Fadinger & Gino Gancia, 2020. "Robot Imports and Firm-Level Outcomes," CRC TR 224 Discussion Paper Series crctr224_2020_243, University of Bonn and University of Mannheim, Germany.
    10. Michael Koch & Ilya Manuylov & Marcel Smolka, 2021. "Robots and Firms," The Economic Journal, Royal Economic Society, vol. 131(638), pages 2553-2584.
    11. Yuri Simachev & Anna Fedyunina & Maksim Yurevich & Mikhail Kuzyk & Nikolai Gorodny, 2021. "New Strategic Approaches to Gaining from Emerging Advanced Manufacturing Markets," Foresight and STI Governance (Foresight-Russia till No. 3/2015), National Research University Higher School of Economics, vol. 15(3), pages 6-21.
    12. Maria Bas & Vanessa Strauss-Khan, 2014. "Does importing more inputs raise exports? Firm-level evidence from France," Université Paris1 Panthéon-Sorbonne (Post-Print and Working Papers) hal-01297202, HAL.
    13. Fedyunina, Anna (Федюнина, Анна) & Averyanova, Yuliya (Аверьянова, Юлия), 2018. "Empirical Analysis of Competitiveness Factors of Russian Exporters in Manufacturing Industries [Эмпирический Анализ Факторов Конкурентоспособности Российских Экспортеров В Обрабатывающих Отраслях]," Ekonomicheskaya Politika / Economic Policy, Russian Presidential Academy of National Economy and Public Administration, vol. 6, pages 102-121, December.
    14. Deborah Winkler & Thomas Farole, 2015. "Global Value Chain Integration and Productivity," World Bank Publications - Reports 23818, The World Bank Group.
    15. Fedyunina, A. & Simachev, Yu. & Kuzyk, M. & Averyanova, Yu., 2020. "Structural features of Russian economy integration into global value chains and lessons for structural policy," Journal of the New Economic Association, New Economic Association, vol. 47(3), pages 106-127.
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    More about this item

    Keywords

    advanced manufacturing; Industry 4.0; international trade; COVID-19; industrial robots; biotechnology; optoelectronics;
    All these keywords.

    JEL classification:

    • F14 - International Economics - - Trade - - - Empirical Studies of Trade
    • O33 - Economic Development, Innovation, Technological Change, and Growth - - Innovation; Research and Development; Technological Change; Intellectual Property Rights - - - Technological Change: Choices and Consequences; Diffusion Processes
    • L6 - Industrial Organization - - Industry Studies: Manufacturing

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