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General Articles

Catching-up in green industries: the role of product architecture

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References

  • Abernathy, W. J., and J. M. Utterback. 1978. “Patterns of Industrial Innovation.” Technology Review 80: 41–47.
  • Anadon, L. D., G. Chan, A. G. Harley, K. Matus, S. Moon, S. L. Murthy, and W. C. Clark. 2016. “Making Technological Innovation Work for Sustainable Development.” Proceedings of the National Academy of Sciences of the United States of America 113: 9682–9690. doi:10.1073/pnas.1525004113.
  • Andersen, P. D. 2004. “Sources of Experience-Theoretical Considerations and Empirical Observations from Danish Wind Energy Technology.” International Journal of Energy Technology and Policy 2 (1): 33–51. doi:10.1504/IJETP.2004.004586.
  • Baldwin, C. Y., and K. B. Clark. 2000. Design Rules. Cambridge, MA: The MIT Press.
  • Baldwin, C. Y., and K. B. Clark. 2006. “Modularity in the Design of Complex Engineering Systems.” In Complex Engineered Systems, 175–205. Berlin: Springer.
  • Baldwin, C. Y., and C. J. Woodard. 2009. “The Architecture of Platforms: A Unified View.” In Platforms, Markets and Innovation, edited by A. Gawer, 19–44. Cheltenham: Edward Elgar Publishing.
  • Binz, C., J. Gosens, T. Hansen, and U. E. Hansen. 2017. “Toward Technology-Sensitive Catching-Up Policies: Insights from Renewable Energy in China.” World Development 96: 418–437. doi:10.1016/J.WORLDDEV.2017.03.027.
  • Binz, C., and B. Truffer. 2017. “Global Innovation Systems—A Conceptual Framework for Innovation Dynamics in Transnational Contexts.” Research Policy 46: 1284–1298. doi:10.1016/J.RESPOL.2017.05.012.
  • Boxwell, M. 2012. Solar Electricity Handbook. Warwickshire: Greenstream Publishing.
  • Cabigiosu, A., F. Zirpoli, and A. Camuffo. 2013. “Modularity, Interfaces Definition and the Integration of External Sources of Innovation in the Automotive Industry.” Research Policy 42: 662–675. doi:10.1016/j.respol.2012.09.002.
  • Campagnolo, D., and A. Camuffo. 2010. “The Concept of Modularity in Management Studies: A Literature Review.” International Journal of Management Reviews 12 (3): 259–283. doi:10.1111/j.1468-2370.2009.00260.x.
  • Cantore, N., P. Nussbaumer, M. Wei, and D. M. Kammen. 2017. “Promoting Renewable Energy and Energy Efficiency in Africa: A Framework to Evaluate Employment Generation and Cost Effectiveness.” Environmental Research Letters 12: 035008. doi:10.1088/1748-9326/aa51da.
  • Christensen, C. M., and R. S. Rosenbloom. 1995. “Explaining the Attacker’s Advantage: Technological Paradigms, Organizational Dynamics, and the Value Network.” Research Policy 24: 233–035257. doi:10.1016/0048-7333(93)00764-K.
  • Colfer, L. J., and C. Y. Baldwin. 2016. “The Mirroring Hypothesis: Theory, Evidence, and Exceptions.” Industrial and Corporate Change 25: 709–738. doi:10.1093/icc/dtw027.
  • Dai, Y., S. Haakonsson, and L. Oehler. 2021. “Catching up Through Green Windows of Opportunity in an era of Technological Transformation: Empirical Evidence from the Chinese Wind Energy Sector.” Industrial and Corporate Change 29: 1277–1295. doi:10.1093/ICC/DTAA034.
  • Davies, A. 1997. “The Life Cycle of a Complex Product System.” International Journal of Innovation Management 01: 229–256. doi:10.1142/S1363919697000139.
  • Dosi, G. 1982. “Technological Paradigms and Technological Trajectories.” Research Policy 11: 147–162. doi:10.1016/0048-7333(82)90016-6.
  • Efstathiou, J. J. 2018. “These Four Power Giants Rule the World's Growing Wind Market.” https://www.renewableenergyworld.com/wind-power/these-four-power-giants-rule-the-world-s-growing-wind-market/#gref (Accessed 18.08.2022).
  • Eisenhardt, K. M. 1989. “Building Theories from Case Study Research.” The Academy of Management Review 14: 532–550.
  • Fagerberg, J., and M. M. Godinho. 2009. Innovation and Catching-Up, The Oxford Handbook of Innovation. doi:10.1093/oxfordhb/9780199286805.003.0019.
  • Fixson, S. K. 2005. “Product Architecture Assessment: A Tool to Link Product, Process, and Supply Chain Design Decisions.” Journal of Operations Management 23: 345–369. doi:10.1016/j.jom.2004.08.006.
  • Fixson, S. K., and J. K. Park. 2008. “The Power of Integrality: Linkages Between Product Architecture, Innovation, and Industry Structure.” Research Policy 37: 1296–1316. doi:10.1016/j.respol.2008.04.026.
  • Frenken, K., and R. A. Boschma. 2007. “A Theoretical Framework for Evolutionary Economic Geography: Industrial Dynamics and Urban Growth as a Branching Process.” Journal of Economic Geography 7: 635–649. doi:10.1093/jeg/lbm018.
  • Fu, X., C. Pietrobelli, and L. Soete. 2011. “The Role of Foreign Technology and Indigenous Innovation in the Emerging Economies: Technological Change and Catching-up.” World Development 39: 1204–1212. doi:10.1016/j.worlddev.2010.05.009.
  • Gao, X., and V. Rai. 2019. “Local Demand-Pull Policy and Energy Innovation: Evidence from the Solar Photovoltaic Market in China.” Energy Policy 128: 364–376. doi:10.1016/J.ENPOL.2018.12.056.
  • Gatignon, H., M. L. Tushman, W. Smith, and P. Anderson. 2002. “A Structural Approach to Assessing Innovation: Construct Development of Innovation Locus, Type, and Characteristics.” Management Science 48: 1103–1122. doi:10.1287/mnsc.48.9.1103.174.
  • Gawer, A. 2014. “Bridging Differing Perspectives on Technological Platforms: Toward an Integrative Framework.” Research Policy 43: 1239–1249. doi:10.1016/J.RESPOL.2014.03.006.
  • Gereffi, G., J. Humphrey, and T. Sturgeon. 2005. “The Governance of Global Value Chains.” Review of International Political Economy 12: 78–104. doi:10.1080/09692290500049805.
  • Haakonsson, S. J., and D. Slepniov. 2018. “Technology Transmission Across National Innovation Systems: The Role of Danish Suppliers in Upgrading the Wind Energy Industry in China.” European Journal of Development Research 30: 462–480. doi:10.1057/S41287-018-0128-5/FIGURES/2.
  • Hain, D. S., R. Jurowetzki, P. Konda, and L. Oehler. 2021. “From Catching up to Industrial Leadership: Towards an Integrated Market-Technology Perspective. An Application of Semantic Patent-to-Patent Similarity in the Wind and EV Sector.” Industrial and Corporate Change 29: 1233–1255. doi:10.1093/ICC/DTAA021.
  • Hansen, T., and U. E. Hansen. 2021. “How Many Firms Benefit from a Window of Opportunity? Knowledge Spillovers, Industry Characteristics, and Catching up in the Chinese Biomass Power Plant Industry.” Industrial and Corporate Change 29: 1211–1232. doi:10.1093/ICC/DTAA008.
  • Hansen, U. E., and D. Ockwell. 2014. “Learning and Technological Capability Building in Emerging Economies: The Case of the Biomass Power Equipment Industry in Malaysia.” Technovation 34: 617–630. doi:10.1016/J.TECHNOVATION.2014.07.003.
  • Hau, E. 2015. Wind Turbines: Fundamentals, Technology, Application, Economics. 2nd ed. Springer-Verlag.
  • Helfat, C. E. 2015. “Vertical Firm Structure and Industry Evolution.” Industrial and Corporate Change 24: 803–818. doi:10.1093/icc/dtv027.
  • Hemami, A. 2012. Wind Turbine Technology. Cengage Learning, Clifton Park, NY.
  • Henderson, R. M., and K. B. Clark. 1990. “Architectural Innovation: The Reconfiguration of Existing Product Technologies and the Failure of Established Firms.” Administrative Science Quarterly 35: 9. doi:10.2307/2393549.
  • Hochstetler, K., and G. Kostka. 2015. “Wind and Solar Power in Brazil and China: Interests, State–Business Relations, and Policy Outcomes.” Global Environmental Politics 15: 74–94. doi:10.1162/GLEP_a_00312.
  • Hofman, E., J. I. M. Halman, and B. Van Looy. 2016. “Do Design Rules Facilitate or Complicate Architectural Innovation in Innovation Alliance Networks?” Research Policy 45: 1436–1448. doi:10.1016/j.respol.2016.04.001.
  • Huenteler, J., J. Ossenbrink, T. S. Schmidt, and V. H. Hoffmann. 2016a. “How a Product’s Design Hierarchy Shapes the Evolution of Technological Knowledge - Evidence from Patent-Citation Networks in Wind Power.” Research Policy 45: 1195–1217. doi:10.1016/j.respol.2016.03.014.
  • Huenteler, J., T. S. Schmidt, J. Ossenbrink, and V. H. Hoffmann. 2016b. “Technology Life-Cycles in the Energy Sector - Technological Characteristics and the Role of Deployment for Innovation.” Technological Forecasting and Social Change 104: 102–121. doi:10.1016/j.techfore.2015.09.022.
  • Kaplinsky, R., and M. Morris. 2000. A Handbook for Value Chain Research. Vol. 113. Brighton: Institute of Development Studies, University of Sussex.
  • Kuntze, J.-C., and T. Moerenhout. 2012. Local Content Requirements and the Renewable Energy Industry - A Good Match? SSRN Electronic Journal. doi:10.2139/ssrn.2188607.
  • Lee, K. 2013. Schumpeterian Analysis of Economic Catch-up: Knowledge, Path-Creation, and the Middle-Income Trap. Cambridge: Cambridge University Press.
  • Lee, K., and C. Lim. 2001. “Technological Regimes, Catching-up and Leapfrogging: Findings from the Korean Industries.” Research Policy 30: 459–483. doi:10.1016/S0048-7333(00)00088-3.
  • Lee, K., and F. Malerba. 2017. “Catch-up Cycles and Changes in Industrial Leadership:Windows of Opportunity and Responses of Firms and Countries in the Evolution of Sectoral Systems.” Research Policy 46: 338–351. doi:10.1016/J.RESPOL.2016.09.006.
  • Lema, R., X. Fu, and R. Rabellotti. 2021. “Green Windows of Opportunity: Latecomer Development in the age of Transformation Toward Sustainability.” Industrial and Corporate Change 29: 1193–1209. doi:10.1093/ICC/DTAA044.
  • Levinthal, D. A. 1998. “The Slow Pace of Rapid Technological Change: Gradualism and Punctuation in Technological Change.” Industrial and Corporate Change 7: 217–247.
  • Lewis, J. I., and R. H. Wiser. 2007. “Fostering a Renewable Energy Technology Industry: An International Comparison of Wind Industry Policy Support Mechanisms.” Energy Policy 35: 1844–1857. doi:10.1016/j.enpol.2006.06.005.
  • Lin, B., and J. He. 2016. “Learning Curves for Harnessing Biomass Power: What Could Explain the Reduction of its Cost During the Expansion of China?” Renewable Energy 99: 280–288. doi:10.1016/J.RENENE.2016.07.007.
  • MacCormack, A., C. Baldwin, and J. Rusnak. 2012. “Exploring the Duality Between Product and Organizational Architectures: A Test of the “Mirroring” Hypothesis.” Research Policy 41: 1309–1324. doi:10.1016/j.respol.2012.04.011.
  • Malerba, F., and R. Nelson. 2011. “Learning and Catching up in Different Sectoral Systems: Evidence from six Industries.” Industrial and Corporate Change 20: 1645–1675. doi:10.1093/icc/dtr062.
  • Malhotra, A., and T. S. Schmidt. 2020. “Accelerating Low-Carbon Innovation.” Joule 0, doi:10.1016/j.joule.2020.09.004.
  • Malhotra, A., T. S. Schmidt, and J. Huenteler. 2019. “The Role of Inter-Sectoral Learning in Knowledge Development and Diffusion: Case Studies on Three Clean Energy Technologies.” Technological Forecasting and Social Change 146, doi:10.1016/j.techfore.2019.04.018.
  • Matsuo, T., and T. S. Schmidt. 2019. “Managing Tradeoffs in Green Industrial Policies: The Role of Renewable Energy Policy Design.” World Development 122: 11–26. doi:10.1016/j.worlddev.2019.05.005.
  • Mazzucato, M., and G. Semieniuk. 2016. Financing Renewable Energy: Who Is Financing What and Why it Matters.
  • Murmann, J. P., and K. Frenken. 2006. “Toward a Systematic Framework for Research on Dominant Designs, Technological Innovations, and Industrial Change.” Research Policy 35: 925–952. doi:10.1016/j.respol.2006.04.011.
  • Nahuis, R., E. H. M. Moors, and R. E. H. M. Smits. 2012. “User Producer Interaction in Context.” Technological Forecasting and Social Change 79: 1121–1134. doi:10.1016/j.techfore.2012.01.005.
  • Nemet, G. F. 2019. How Solar Energy Became Cheap: A Model for Low-Carbon Innovation. 1st ed. Routledge.
  • Nussbaumer, T. 2003. “Combustion and Co-Combustion of Biomass: Fundamentals, Technologies, and Primary Measures for Emission Reduction.” Energy and Fuels 17: 1510–1521. doi:10.1021/ef030031q.
  • OECD. 2015. Local-content rEQUIREMENTS in the Solar- and Wind-energy Global Value Chains, in: Overcoming Barriers to International Investment in Clean Energy. Paris, pp. 47–87. doi:10.1787/9789264227064-6-en.
  • Perez, C., and L. Soete. 1988. “Catching up in Technology: Entry Barriers and Windows of Opportunity.” In Technical Change and Economic Theory, edited by G. Dosi, C. Freeman, R. R. Nelson, and L. Soete, 458–479. London: Francis Pinter.
  • Quitzow, R. 2015. “Dynamics of a Policy-Driven Market: The co-Evolution of Technological Innovation Systems for Solar Photovoltaics in China and Germany.” Environmental Innovation and Societal Transitions 17: 126–148. doi:10.1016/j.eist.2014.12.002.
  • Quitzow, R., J. Huenteler, and H. Asmussen. 2017. “Development Trajectories in China’s Wind and Solar Energy Industries: How Technology-Related Differences Shape the Dynamics of Industry Localization and Catching up.” Journal of Cleaner Production 158: 122–133. doi:10.1016/J.JCLEPRO.2017.04.130.
  • REN21, . 2016. Renewables 2016. Global Status Report. Paris.
  • Rennkamp, B., and A. Boyd. 2015. “Technological Capability and Transfer for Achieving South Africa’s Development Goals.” Climate Policy 15: 12–29. doi:10.1080/14693062.2013.831299.
  • Rosiello, A., and A. Maleki. 2021. “A Dynamic Multi-Sector Analysis of Technological Catch-up: The Impact of Technology Cycle Times, Knowledge Base Complexity and Variety.” Research Policy 50: 104194. doi:10.1016/J.RESPOL.2020.104194.
  • Sanchez, R., and J. T. Mahoney. 1996. “Modularity, Flexibility, and Knowledge Management in Product and Organization Design.” Strategic Management Journal 17: 63–76. doi:10.1002/smj.4250171107.
  • Schmidt, T. S., and J. Huenteler. 2016. “Anticipating Industry Localization Effects of Clean Technology Deployment Policies in Developing Countries.” Global Environmental Change 38: 8–20. doi:10.1016/j.gloenvcha.2016.02.005.
  • Seawright, J., and J. Gerring. 2008. “Case Selection Techniques in A Menu of Qualitative and Quantitative Options.” Political Research Quarterly 61: 294–308.
  • Stephan, A., T. S. Schmidt, C. R. Bening, and V. H. Hoffmann. 2017. “The Sectoral Configuration of Technological Innovation Systems: Patterns of Knowledge Development and Diffusion in the Lithium-ion Battery Technology in Japan.” Research Policy 46: 709–723. doi:10.1016/J.RESPOL.2017.01.009.
  • Surana, K., C. Doblinger, L. D. Anadon, and N. Hultman. 2020. “Effects of Technology Complexity on the Emergence and Evolution of Wind Industry Manufacturing Locations Along Global Value Chains.” Nature Energy 5 (10): 811–821. doi:10.1038/s41560-020-00685-6.
  • Tushman, M. L., and J. P. Murmann. 1998. “Dominant Designs, Technology Cycles, and Organization Outcomes.” Research in Organizational Behavior 20: 231–266. doi:10.5465/APBPP.1998.27643428.
  • Tushman, M., and L. Rosenkopf. 1992. “Organizational Determinants of Technological Change: Toward a Sociology of Technological Evolution.” Research in Organizational Behavior 14: 311–347.
  • Ulrich, K. 1995. “The Role of Product Architecture in the Manufacturing Firm.” Research Policy 24: 419–440. doi:10.1016/0048-7333(94)00775-3.
  • UNCTAD. 2014. Local Content Requirements & the Green Economy. Geneva: United Nations Conference on Trade and Development.
  • van Loo, S., and J. Koppejan. 2008. The Handbook of Biomass Combustion & Co-Firing. London/Washington DC: Earthscan.
  • von Hippel, E. 1994. ““Sticky Information” and the Locus of Problem Solving: Implications for Innovation.” Management Science 40: 429–439. doi:10.1287/mnsc.40.4.429.
  • Wang, H., and C. Kimble. 2011. “Leapfrogging to Electric Vehicles: Patterns and Scenarios for China’s Automobile Industry.” Int. J. Automotive Technology and Management 11: 312–325. doi:10.1504/IJATM.2011.043164.
  • Wilson, C., A. Grubler, N. Bento, S. Healey, S. de Stercke, and C. Zimm. 2020. “Granular Technologies to Accelerate Decarbonization: Smaller, Modular Energy Technologies Have Advantages.” Science 1979 (368): 36–39. doi:10.1126/SCIENCE.AAZ8060/SUPPL_FILE/AAZ8060_WILSON_SM.PDF.
  • Windrum, P., and C. Birchenhall. 1998. “Is Product Life Cycle Theory a Special Case? Dominant Designs and the Emergence of Market Niches Through Coevolutionary-Learning.” Structural Change and Economic Dynamics 9: 109–134. doi:10.1016/S0954-349X(97)00039-8.
  • Zhang, F., and K. S. Gallagher. 2016. “Innovation and Technology Transfer Through Global Value Chains: Evidence from China’s PV Industry.” Energy Policy 94: 191–203. doi:10.1016/J.ENPOL.2016.04.014.

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