Otwarty dostęp

Dynamic analysis of digitally-driven technology upgrades and environments based on DAG-SVAR models-a case study of the United States of America


Zacytuj

Parida V. Digitalization[J]. 2018. Search in Google Scholar

Johns J. Digital technological upgrading in manufacturing global value chains: The impact of additive manufacturing[J]. Global Networks, 2022, 22(4): 649-665. Search in Google Scholar

Banga K. Digital technologies and product upgrading in global value chains: Empirical evidence from Indian manufacturing firms[J]. The European Journal of Development Research, 2022: 1-26. Search in Google Scholar

Szalavetz A. Digitalisation, automation and upgrading in global value chains–factory economy actors versus lead companies[J]. Post-Communist Economies, 2019, 31(5): 646-670. Search in Google Scholar

Szalavetz A. Digitalisation, automation and upgrading in global value chains–factory economy actors versus lead companies[J]. Post-Communist Economies, 2019, 31(5): 646-670. Search in Google Scholar

Isaksen A, Langemyr Eriksen E, Rypestøl J O. Regional industrial restructuring: Asset modification and alignment for digitalization[J]. Growth and Change, 2020, 51(4): 1454-1470. Search in Google Scholar

West T D, Blackburn M. Demonstrated benefits of a nascent digital twin[J]. Insight, 2018, 21(1): 43-47. Search in Google Scholar

Yang W Q, Zheng Y, Li S Y. Application status and prospect of digital twin for on-orbit spacecraft[J]. IEEE Access, 2021, 9: 106489-106500. Search in Google Scholar

Bisht D, Singh R, Gehlot A, et al. Imperative role of integrating digitalization in the firms finance: A technological perspective[J]. Electronics, 2022, 11(19): 3252. Search in Google Scholar

Ren S, Hao Y, Wu H. Digitalization and environment governance: does internet development reduce environmental pollution?[J]. Journal of Environmental Planning and Management, 2023, 66(7): 1533-1562. Search in Google Scholar

Wen H, Wen C, Lee C C. Impact of digitalization and environmental regulation on total factor productivity[J]. Information Economics and Policy, 2022, 61: 101007. Search in Google Scholar

Huong T T L, Thanh T T. Is digitalization a driver to enhance environmental performance? An empirical investigation of European countries[J]. Sustainable Production and Consumption, 2022, 32: 230-247. Search in Google Scholar

Beier G, Fritzsche K, Kunkel S, et al. A green digitalized economy? Challenges and opportunities for sustainability[J]. 2020. Search in Google Scholar

Chen X, Despeisse M, Johansson B. Environmental sustainability of digitalization in manufacturing: A review[J]. Sustainability, 2020, 12(24): 10298. Search in Google Scholar

Ahmadova G, Delgado-Márquez B L, Pedauga L E, et al. Too good to be true: The inverted U-shaped relationship between home-country digitalization and environmental performance[J]. Ecological Economics, 2022, 196: 107393. Search in Google Scholar

Hu W, Zhou H, Cao T. Evolution and development of American Digital Strategy [J]. Journal of China Academy of Electronic Science,2022,17(01):12-18. Search in Google Scholar

Amisano G, Giannini C. Topics in structural VAR econometrics[M]. Springer Science & Business Media, 2012. Search in Google Scholar

Pearl J. Causa l diagrams for empirical research [J]. Biometrika, 1995, 82(4): 702-710. Search in Google Scholar

Bessler D A, Jian Y. The structure of interdependence in international stock markets [J]. Journal of International Money & Finance, 2003, 22(2): 261-287. Search in Google Scholar

International Telecommunication Union. Measuring digital development: Facts and Figures: Focus on Least Developed Countries [R]. U.N., 2023. Search in Google Scholar

UN DESA. United Nations e-government survey 2022: The Future of Digital Government [R]. New York: U.N. Publishing Section,2022. Search in Google Scholar

European Commission.Digital economy and society index 2022[R]. https://digital-strategy.ec.europa.eu/en/policies/desi Search in Google Scholar

WANG Zhe,CHEN Yinmo,ZHANG Ming. Measuring the Development of the Global Digital Economy: Stylized Facts Based on TIMG Index[J]. Chinese Review of Financial Studies, 2021, 13(06): 40-56+ 118-119. Search in Google Scholar

Ding Xiaoyi, Yan Haiyan, Qu Haonan. Comparison of Technological Capabilities for Countries along the Belt and Road on the View of Economic Complexity [J]. Science & Technology and Economy, 2021, 34(04): 91-95. DOI:10.14059/j.cnki.cn32-1276n.2021.04.017. Search in Google Scholar

Hausmann R,Hidalgo C,Bustos S A,Coscia M. The Atlas of Economic Complexity: Mapping Paths to Prosperity[M].Cambridge: MIT Press,2013. Search in Google Scholar

Hidalgo C A,Hausmann R. The Building Blocks of Economic Complexity[C]. Proceedings of the National Academy of Sciences of the United States of America,2009,106( 26) : 10570-10575. Search in Google Scholar

Zhou Yiqing, Nie Yuankun. Dynamic Calculation and Regional Characteristic Decomposition of Green Total Factor Productivity [J]. Statistics & Decision, 2022, 38(20): 37-42. DOI: 10.13546/j.cnki.tjyjc. 2022.20.007. Search in Google Scholar

Arbona A, Giménez V, López-Estrada S, et al. Efficiency and quality in Colombian education: An application of the metafrontier Malmquist-Luenberger productivity index[J]. Socio-economic planning sciences, 2022, 79: 101122. Search in Google Scholar

Matsumoto K, Makridou G, Doumpos M. Evaluating environmental performance using data envelopment analysis: The case of European countries[J]. Journal of cleaner production, 2020, 272: 122637. Search in Google Scholar

Aparicio J, Cordero J M, Díaz-Caro C. Efficiency and productivity change of regional tax offices in Spain: an empirical study using Malmquist–Luenberger and Luenberger indices[J]. Empirical Economics, 2020, 59(3): 1403-1434. Search in Google Scholar

Lyu Y F. An Empirical Analysis on the Relationship between Green Economy and Inflation in China[J]. Applied ecology and environmental research, 2019, 17(4): 8969-8983. Search in Google Scholar

Ananda J, Hampf B. Measuring environmentally sensitive productivity growth: An application to the urban water sector[J]. Ecological Economics, 2015, 116: 211-219. Search in Google Scholar

Zhou Yiqing, Nie Yuankun. Dynamic Calculation and Regional Characteristic Decomposition of Green Total Factor Productivity [J]. Statistics & Decision, 2022, 38(20): 37-42. DOI:10.13546/j.cnki. tjyjc.2022.20.007. Search in Google Scholar

Tone K, Tsutsui M. An Epsilon-based Measure of Efficiency inDEA—A Third Pole of Technical Efficiency [J].European Journal of Operational Research,2010,(207). Search in Google Scholar

Oh D. A global Malmquist-Luenberger productivity index[J]. Journal of productivity analysis, 2010, 34(3): 183-197. Search in Google Scholar

Meng M, Qu D. Understanding the green energy efficiencies of provinces in China: A Super-SBM and GML analysis[J]. Energy, 2022, 239: 121912. Search in Google Scholar

Spirtes P, Glymour C N, Scheines R. Causation, prediction, and search[M]. MIT press, 2000. Search in Google Scholar

Muffatto M, Roveda M.. Product Architecture and Platforms:a Conceptual Framework[J].International Journal of Technology Management, 2002,24(1):1-16. Search in Google Scholar

Liu D Y, Chen S W, Chou T C.. Resource Fit in Digital Transformation Lessons Learned from the CBC Bank Global E-banking Project[J].Management Decision, 2011,49(9-10):1728-1742. Search in Google Scholar

Porter M E, Heppelmann J E.. How Smart, Connected Products are Transforming Competition[J]. Harvard Business Review,2014,92(11):64. Search in Google Scholar

eISSN:
2444-8656
Język:
Angielski
Częstotliwość wydawania:
Volume Open
Dziedziny czasopisma:
Life Sciences, other, Mathematics, Applied Mathematics, General Mathematics, Physics