[1] Woodward, J. (1958). Management and Technology. London: Her Majesty’s Stationary Office.
[2] Kiamehr, M., M. Hobday, and M. Hamedi. (2015). Latecomer Firm Strategies in Complex Product Systems (CoPS): The Caseof Iran’s Thermal Electricity Generation Systems. Research Policy. 44 (6): 1240–1251.
[3] Hobday, M. (1998). Product Complexity, Innovation and Industrial Organisation. Research Policy. 26 (6): 689–710.
[4] Davies, A., and M. Hobday. (2005). The Business of Projects (Managing Innovation in Complex Product Systems). New York: Cambridge University Press.
[5] Miller, R., M. Hobday, Th Lerouxdemers, and X. Olleros. (1995). Innovation in Complex Systems Industries: The Case ofFlight Simulation. Industrial and Corporate Change. 4 (2): 363–400.
[6] Davies, A. (1997). The Life Cycle of a Complex Product System. International Journal of Innovation Management. 1 (3): 229– 256.
[7] Hobday, M., and T. Brady. (2000). A Fast Method for Analysing and Improving Complex Software Processes. R&D Management. 30 (1): 1–22.
[8] Prencipe, A. (2000). Breadth and Depth of Technological Capabilities in CoPS: The Case of the Aircraft Engine ControlSystem. Research Policy. 29 (7–8): 895–911.
[9] Choung, J. Y., and H. R. Hwang. (2007). Developing the Complex System in Korea: The Case Study of TDX and CDMATelecom System. International Journal of Technological Learning, Innovation and Development. 1 (2): 204–225.
[10] Park, T. Y. (2013). How a Latecomer Succeeded in a Complex Product System Industry: Three Case Studies in the KoreanTelecommunication Systems. Industrial and Corporate Change. 22 (2): 363–396
[11] Park, T. Y., and J. Y. Kim. (2014). The Capabilities Required for Being Successful in Complex Product Systems: Case Study ofKorean e-Government. Asian Journal of Technology Innovation. 22 (2): 268–285.
[12] Lee, J. J., and H. Yoon. (2015). A Comparative Study of Technological Learning and Organizational Capability Developmentin Complex Products Systems: Distinctive Paths of Three Latecomers in Military Aircraft Industry. Research Policy. 44 (7): 1296–1313.
[13] Naghizadeh, M., M. Manteghi, M. Ranga, and R. Naghizadeh. (2017). Managing Integration in Complex Product Systems:The Experience of the IR-150 Aircraft Design Program. Technological Forecasting and Social Change. 122: 253–261.
[14] Majidpour, M. (2016). Technological Catch-up in Complex Product Systems. Journal of Engineering and Technology Management. 41: 92–105.
[15] Safdari Ranjbar, M., Park, T. Y., Ghazinoori, S., Manteghi, M. (2019). Multi-level drivers of catching up in complex product systems: an Iranian gas turbine producer. Journal of Science and Technology Policy Management. 11 (1): 85-106.
[16] Kiamehr, M. (2017). Paths of Technological Capability Building in Complex Capital Goods: The Case of Hydro ElectricityGeneration Systems in Iran. Technological Forecasting and Social Change. 122: 215–230.
[17] Acha, V., A. Davies, M. Hobday, and A. Salter. (2004). Exploring the Capital Goods Economy: Complex Product Systems inthe UK. Industrial and Corporate Change. 13 (3): 505–529.
[18] Hobday, M., H. Rush, and J. Tidd. (2000). Innovation in Complex Products and System. Research Policy. 29 (7–8): 793–804.
[19] Safdari Ranjbar, M., Park, T. Y., Kiamehr, M. (2018). What happened to complex product systems literature over the last two decades: progresses so far and path ahead. Technology Analysis & Strategic Management. 30 (8), 948–966.
[20] Ren, Y. T., and K. T. Yeo. (2006). Research Challenges on Complex Product Systems (CoPS) Innovation. Journal of the Chinese Institute of Industrial Engineers. 23 (6): 519–529.
[21] Park, T. Y., Ji, I. (2020). Evidence of latecomers’ catch-up in CoPS industries: a systematic review. Technology Analysis & Strategic Management. 32 (8)
[22] Rosenberg, N. (1982). Inside the Black Box: Technology and Economics. Cambridge: Cambridge University Press.
[23] Chudnovsky, D., M. Nagao, S. Jacobsson, and F. Pinter. (1983). Capital Goods Production in the Third World. London: Palgrave Macmillan.
[24] Randhawa, K., R. Wilden, and J. Hohberger. (2016). A Bibliometric Review of Open Innovation: Setting a Research Agenda. Journal of Product Innovation Management. 33 (6): 750–772.
[25] Hansen, K. L., and H. Rush. (1998). Hotspots in Complex Product Systems: Emerging Issues in Innovation Management. Technovation. 18 (8/9): 555–590.
[26] Hobday, M., and H. Rush. (1999). Technology Management in Complex Product Systems (CoPS) – Ten QuestionsAnswered. International Journal of Technology Management. 17 (6): 618–638
[27] Baraldi, E. (2009). User-related Complexity Dimensions of Complex Products and Systems (CoPS): A Case of Implementingan ERP System. International Journal of Innovation Management. 13 (1): 19–45.
[28] Liu, J., and J. Su. (2014). Market Orientation, Technology Orientation and Product Innovation Success: Insights from CoPS. International Journal of Innovation Management. 18 (4): 1–25.
[29] Dedehayir, O., T. Nokelainen, and S. J. Makinen. (2014). Disruptive Innovations in Complex Product Systems Industries: ACase Study. Journal of Engineering and Technology Management. 33: 174–192.
[30] Gil, N. (2007). On the Value of Project Safeguards: Embedding Real Options in Complex Products and Systems. Research Policy. 36 (7): 980–999.
[31] Yeo, K. T., and Y. T. Ren. (2009). Risk Management Capability Maturity Model for ComplexProduct Systems (CoPS)Projects. Systems Engineering. 12 (4): 275–294.
[32] Magnaye, R., B. Sauser, P. Patanakul, C. Nowicki, and W. Randall. (2014). Earned Readiness Management for Scheduling,Monitoring and Evaluating the Development of Complex Product Systems. International Journal of Project Management. 32 (7): 1246–1259.
[33] Du, B., Sh Guo, X. Huang, Y. Li, and J. Guo. (2015). A Pareto Supplier Selection Algorithm for Minimum the Life Cycle Cost ofComplex Product System. Expert Systems with Applications. 42 (9): 4253–4264.
[34] Hardstone, G. A. P. (2004). Capabilities, Structures and Strategies Re-Examined: Incumbent Firms and the Emergence ofComplex Product Systems (CoPS) in Mature Industries. Technology Analysis & Strategic Management. 16 (2): 173–196.
[35] Su, J., and J. Liu. (2012). Effective Dynamic Capabilities in Complex Product Systems: Experiences of Local Chinese Firm. Journal of Knowledge-Based Innovation in China. 4 (3): 174–188.
[36] Park, T. P., and I. Ji. (2015). From Mass Production to Complex Production: Case of the Korean Telecom Equipment Sector. Asia-Pacific Journal of Accounting & Economic. 22 (1): 78–102.
[37] Davies, A., and T. Brady. (1998). Policies for a Complex Product System. Futures. 30 (4): 293 304.
[38] Kiamehr, M., M. Hobday, and A. Kermanshah. (2014). Latecomer Systems Integration Capability in Complex Capital Goods:The Case of Iran’s Electricity Generation Systems. Industrial and Corporate Change. 23 (3): 689–716.
[39] Chen, J., L. Tong, and E. W. T. Ngai. (2007). Inter-Organizational Knowledge Management in Complex Products andSystems (Challenges and an Exploratory Framework). Journal of Technology Management in China. 2 (2): 134–144.
[40] Ngai, E. W. T., Ch Jin, and T. Liang. (2008). A Qualitative Study of Inter-Organizational Knowledge Management in ComplexProducts and Systems Development. R&D Management. 38 (4): 421–440.
[41] Gann, D. M., and A. Salter. (1998). Learning and Innovation Management in Project-Based, Service-Enhanced Firms. International Journal of Innovation Management. 2 (4): 431–454.
[42] Gann, D. M., and A. J. Salter. (2000). Innovation in Project-Based, Service-Enhanced Firms: The Construction of ComplexProducts and Systems. Research Policy. 29 (7–8): 955–972.
[43] Davies, A., T. Brady, A. Prencipe, and M. Hobday. (2011). Innovation in Complex Products and Systems: Implications forProject Based Organizing. Project-Based Organizing and Strategic Management. Advances in Strategic Management 28: 3–26.
[44] Hobday, M. (2000). The Project-based Organization: An Ideal form for Managing Complex Products and Systems? Research Policy. 29 (7–8): 871–893.
[45] Kwak, K., Yoon, H. (2020). Unpacking transnational industry legitimacy dynamics, windows of opportunity, and latecomers’ catch-up in complex product systems. Research Policy. 49 (4).
[46] Appio, F. P., Lacoste, S. (2018). B2B relationship management in complex product systems (CoPS). Industrial Marketing Management. 79: 53-57.
[47] Lehtinen, J., Aaltonen, K., Rajala, R. (2018). Stakeholder management in complex product systems: Practices and rationales for engagement and disengagement. Industrial Marketing Management. 79: 58-70.
[48] Crespin-Mazet, F., Romestant, F., Salle, R. (2018). The co-development of innovative projects in CoPS activities. Industrial Marketing Management. 79: 71-83.
[49] Roehrich, J. K., Davis, A., Frederiksen, L., Sergeeeva, N. (2018). Management innovation in complex products and systems: The case of integrated project teams. Industrial Marketing Management. 79: 84-93.
[50] Galati, F., Bigliardi, B., Galati, R., Petroni, G. (2019).
Managing structural inter organizational tensions in complex product systems projects: Lessons from the Metis case. Journal of Business Research.
https://doi.org/10.1016/j.jbusres.2019.10.044
[51] Kim, Y. Z., and K. Lee. (2008). Sectoral Innovation System and a Technological Catch-up: The Case of the Capital GoodsIndustry in Korea. Global Economic Review. 37 (2): 135–155.
[52] Zhang, L., W. Lam, and H. Hu. (2013). Complex Product and System, Catch-up, and Sectoral System of Innovation: A CaseStudy of Leading Medical Device Companies in China. International Journal of Technological Learning, Innovation and Development. 6 (3): 283.
[53] Lee, K., and F. Malerba. (2017). Catch-up Cycles and Changes in Industrial Leadership: Windows of Opportunity andResponses of Firms and Countries in the Evolution of Sectoral Systems. Research Policy. 46 (2): 338–351.
[54] Vertesy, D. (2017). Preconditions, Windows of Opportunity and Innovation Strategies: Successive Leadership Changes inthe Regional jet Industry. Research Policy. 46 (2): 388–403.
[55] Choung, J. Y., H. R. Hwang, and H. Yang. (2006). The Co-Evolution of Technology and Institution in the Korean Informationand Communications Industry. International Journal of Technology Management. 36 (1/2/3): 249–266.