Introduction to Techno-Sectoral Innovation System Modeling and Functions Formulating
Commenced in January 2007
Frequency: Monthly
Edition: International
Paper Count: 32799
Introduction to Techno-Sectoral Innovation System Modeling and Functions Formulating

Authors: S. M. Azad, H. Ghodsipour, F. Roshannafas

Abstract:

In recent years ‘technology management and policymaking’ is one of the most important problems in management science. In this field, different generations of innovation and technology management are presented which the earliest one is Innovation System (IS) approach. In a general classification, innovation systems are divided in to 4 approaches: technical, sectoral, regional, and national. There are many researches in relation to each of these approaches in different academic fields. Every approach has some benefits. If two or more approaches hybrid, their benefits would be combined. In addition, according to the sectoral structure of the governance model in Iran, in many sectors, such as information technology, the combination of three other approaches with sectoral approach is essential. Hence, in this paper, combining two IS approaches (technical and sectoral) and using system dynamics, a generic model is presented for a sample of software industry. As a complimentary point, this article is introducing a new hybrid approach called Techno-Sectoral Innovation System. This TSIS model is accomplished by Changing concepts of the ‘functions’-which came from Technological IS literature- and using them into sectoral system as measurable indicators.

Keywords: Innovation system, technology, techno-sectoral system, functional indicators, system dynamics.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1089613

Procedia APA BibTeX Chicago EndNote Harvard JSON MLA RIS XML ISO 690 PDF Downloads 1725

References:


[1] B. R. Martin, "The evolution of science policy and innovation studies”, Research Policy 41, 2012, p. 1219– 1239.
[2] P.M. Boulanger, T. Bre´chet, "Models for policy-making in sustainable development: The state of the art and perspectives for research”, Ecological Economics 55, 2005, p. 337– 350.
[3] C. Edquist, Systems of innovation: technologies, institutions and organizations. London: Pinter; 1997.
[4] C. Freeman, "The ‘national system of innovation’ in historical perspective”. Cambridge Journal of Economics, 995; 19(1), 1995, p. 5–24.
[5] P. Cooke, M. Uranga, G. Etexbarria, "Regional innovation systems: institutional and organizational dimension” Res Policy 26, 1997, p. 475–91.
[6] B. Carlsson, R. Stankiewicz, ‘On the nature, function and composition of technological systems’, Journal of Evolutionary Economics, 1, 1991, p. 93–11.
[7] R.A.A. Suurs, M.P. Hekkert, "Cumulative causation in the formation of a Technological Innovation System: The case of Biofuels in the Netherlands” Technological Forecasting and Social Change, Volume 76, Issue 8, P. 1003–1020, 2010.
[8] F. Malerba, "Sectoral systems of innovation and production”. Research Policy; 31, 2002, P. 247–264.
[9] B. Carlsson, S. Jacobsson, "Innovation systems: analytical and methodological issues”, Research Policy 31, 2002, P. 233–245.
[10] Y.C. Chang, M.H. Chen, "Comparing approaches to systems of innovation: the knowledge perspective”, Technology in Society 26, 2004, P. 17–37,.
[11] S. Gao, H. van Lente, "Comparing approaches to systems of innovation: Confronting to the Chinese telecommunication sector” Paper for Globelics academy 2008.
[12] O. N. Simona, A. Floortje, "Why does renewable energy diffuse so slowly? A review of innovation system problems”, Renewable and Sustainable Energy Reviews 16, 2012, P.3836– 3846.
[13] J.M. Zabala, C. Edquist, "Public Procurement for Innovation as mission-oriented innovation policy”, Iturriagagoitia Research Policy 41, 2012,P. 1757– 1769.
[14] S. Wirth, J. Markard, "Context matters: How existing sectors and competing technologies affect the prospects of the Swiss Bio-SNG innovation system”, Technological Forecasting & Social Change, 2011, 78, P. 635–649.
[15] J. Musiolik, J. Markard, "Creating and shaping innovation systems: Formal networks in the innovation system for stationary fuel cells in Germany”, Energy Policy39, 2011, P.1909–1922.
[16] U. Dolata, "Technological innovations and sectoral change Transformative capacity, adaptability, patterns of change: An analytical framework”, Research Policy 38, 2009, P. 1066–1076.
[17] F.W. Geels, "From sectoral systems of innovation to socio-technical systems Insights about dynamics and change from sociology and institutional theory”, Research Policy 33, 2004, P. 897–920.