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Car and the city: Socio-technical transition pathways to 2030

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  • Marletto, Gerardo

Abstract

The socio-technical approach to innovation is used to show that the future of urban mobility will depend on the competition between coalitions of innovative actors who support alternative transport systems. A new graphical tool—the socio-technical map—is introduced in order to represent the positioning of supporting coalitions with reference to three variables: business models, propulsion technologies and power. Three transition pathways to 2030 may emerge from the current situation of urban mobility: 1) ‘AUTO-city’, i.e. the reconfiguration of the ‘individual car’ dominant system through the stable integration of producers of batteries; 2) ‘ECO-city’, i.e. the further empowering and diffusion of local coalitions which already integrate all non-car modes of transport; 3) ‘ELECTRI-city’, i.e. a new ‘electricity vehicles+smart grids’ system established by a coalition led by electric operators. Because of the cumulative processes between the transformation of supporting coalition and their access to higher level of competence and power, both technologies and policies can be considered as endogenous variables to transition pathways. The resulting policy prescriptions are clear-cut: if not destabilized by policy pressure, the ‘AUTO-city’ will prevail; to support the ‘ECO-city’ and the ‘ELECTRI-city’, a multilevel policy for urban and transport planning and a national innovation and industrial policy are needed, respectively.

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  • Marletto, Gerardo, 2014. "Car and the city: Socio-technical transition pathways to 2030," Technological Forecasting and Social Change, Elsevier, vol. 87(C), pages 164-178.
  • Handle: RePEc:eee:tefoso:v:87:y:2014:i:c:p:164-178
    DOI: 10.1016/j.techfore.2013.12.013
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    as
    1. Smith, Adrian & Raven, Rob, 2012. "What is protective space? Reconsidering niches in transitions to sustainability," Research Policy, Elsevier, vol. 41(6), pages 1025-1036.
    2. Andersen, Poul H. & Mathews, John A. & Rask, Morten, 2009. "Integrating private transport into renewable energy policy: The strategy of creating intelligent recharging grids for electric vehicles," Energy Policy, Elsevier, vol. 37(7), pages 2481-2486, July.
    3. Bristow, Abigail L. & Tight, Miles & Pridmore, Alison & May, Anthony D., 2008. "Developing pathways to low carbon land-based passenger transport in Great Britain by 2050," Energy Policy, Elsevier, vol. 36(9), pages 3427-3435, September.
    4. Köhler, Jonathan & Whitmarsh, Lorraine & Nykvist, Björn & Schilperoord, Michel & Bergman, Noam & Haxeltine, Alex, 2009. "A transitions model for sustainable mobility," Ecological Economics, Elsevier, vol. 68(12), pages 2985-2995, October.
    5. Pasaoglu, Guzay & Honselaar, Michel & Thiel, Christian, 2012. "Potential vehicle fleet CO2 reductions and cost implications for various vehicle technology deployment scenarios in Europe," Energy Policy, Elsevier, vol. 40(C), pages 404-421.
    6. Safarzynska, Karolina & van den Bergh, Jeroen C.J.M., 2010. "Evolving power and environmental policy: Explaining institutional change with group selection," Ecological Economics, Elsevier, vol. 69(4), pages 743-752, February.
    7. Marletto, Gerardo, 2011. "Structure, agency and change in the car regime. A review of the literature," European Transport \ Trasporti Europei, ISTIEE, Institute for the Study of Transport within the European Economic Integration, issue 47, pages 71-88.
    8. Doucette, Reed T. & McCulloch, Malcolm D., 2011. "Modeling the CO2 emissions from battery electric vehicles given the power generation mixes of different countries," Energy Policy, Elsevier, vol. 39(2), pages 803-811, February.
    9. Unruh, Gregory C., 2000. "Understanding carbon lock-in," Energy Policy, Elsevier, vol. 28(12), pages 817-830, October.
    10. Geels, Frank W., 2010. "Ontologies, socio-technical transitions (to sustainability), and the multi-level perspective," Research Policy, Elsevier, vol. 39(4), pages 495-510, May.
    11. Geels, Frank W. & Schot, Johan, 2007. "Typology of sociotechnical transition pathways," Research Policy, Elsevier, vol. 36(3), pages 399-417, April.
    12. Dijk, Marc & Orsato, Renato J. & Kemp, René, 2013. "The emergence of an electric mobility trajectory," Energy Policy, Elsevier, vol. 52(C), pages 135-145.
    13. Hickman, Robin & Saxena, Sharad & Banister, David & Ashiru, Olu, 2012. "Examining transport futures with scenario analysis and MCA," Transportation Research Part A: Policy and Practice, Elsevier, vol. 46(3), pages 560-575.
    14. Geels, Frank W., 2012. "A socio-technical analysis of low-carbon transitions: introducing the multi-level perspective into transport studies," Journal of Transport Geography, Elsevier, vol. 24(C), pages 471-482.
    15. Anable, Jillian & Brand, Christian & Tran, Martino & Eyre, Nick, 2012. "Modelling transport energy demand: A socio-technical approach," Energy Policy, Elsevier, vol. 41(C), pages 125-138.
    16. Vanessa OLTRA (E3i-IFReDE-GRES) & Maïder SAINT-JEAN (E3i-IFReDE-GRES), 2006. "Variety of technological trajectories in low emission vehicles (LEVs): a patent data analysis," Cahiers du GRES (2002-2009) 2006-20, Groupement de Recherches Economiques et Sociales.
    17. Suurs, Roald A.A. & Hekkert, Marko P. & Kieboom, Sander & Smits, Ruud E.H.M., 2010. "Understanding the formative stage of technological innovation system development: The case of natural gas as an automotive fuel," Energy Policy, Elsevier, vol. 38(1), pages 419-431, January.
    18. Kley, Fabian & Lerch, Christian & Dallinger, David, 2011. "New business models for electric cars--A holistic approach," Energy Policy, Elsevier, vol. 39(6), pages 3392-3403, June.
    19. Fabien Leurent & Elisabeth Windisch, 2011. "Triggering the development of electric mobility: a review of public policies," Post-Print hal-00652472, HAL.
    20. Foxon, Timothy J., 2011. "A coevolutionary framework for analysing a transition to a sustainable low carbon economy," Ecological Economics, Elsevier, vol. 70(12), pages 2258-2267.
    21. Erlinghagen, Sabine & Markard, Jochen, 2012. "Smart grids and the transformation of the electricity sector: ICT firms as potential catalysts for sectoral change," Energy Policy, Elsevier, vol. 51(C), pages 895-906.
    22. Hua Wang, 2009. "Made in China: Joint Ventures and Domestic Newcomers," Palgrave Macmillan Books, in: Michel Freyssenet (ed.), The Second Automobile Revolution, chapter 20, pages 383-403, Palgrave Macmillan.
    23. Frank W. Geels, 2005. "Technological Transitions and System Innovations," Books, Edward Elgar Publishing, number 3576.
    24. Smith, Adrian & Stirling, Andy & Berkhout, Frans, 2005. "The governance of sustainable socio-technical transitions," Research Policy, Elsevier, vol. 34(10), pages 1491-1510, December.
    25. Budde Christensen, Thomas & Wells, Peter & Cipcigan, Liana, 2012. "Can innovative business models overcome resistance to electric vehicles? Better Place and battery electric cars in Denmark," Energy Policy, Elsevier, vol. 48(C), pages 498-505.
    26. Musiolik, Jörg & Markard, Jochen & Hekkert, Marko, 2012. "Networks and network resources in technological innovation systems: Towards a conceptual framework for system building," Technological Forecasting and Social Change, Elsevier, vol. 79(6), pages 1032-1048.
    27. Mario Amendola & Jean-Luc Gaffard, 2006. "The market way to riches: behind the myth," Post-Print halshs-00420556, HAL.
    28. Turnheim, Bruno & Geels, Frank W., 2012. "Regime destabilisation as the flipside of energy transitions: Lessons from the history of the British coal industry (1913–1997)," Energy Policy, Elsevier, vol. 50(C), pages 35-49.
    29. Farla, Jacco & Markard, Jochen & Raven, Rob & Coenen, Lars, 2012. "Sustainability transitions in the making: A closer look at actors, strategies and resources," Technological Forecasting and Social Change, Elsevier, vol. 79(6), pages 991-998.
    30. Johan Schot & Frank Geels, 2007. "Niches in evolutionary theories of technical change," Journal of Evolutionary Economics, Springer, vol. 17(5), pages 605-622, October.
    31. Sovacool, Benjamin K. & Hirsh, Richard F., 2009. "Beyond batteries: An examination of the benefits and barriers to plug-in hybrid electric vehicles (PHEVs) and a vehicle-to-grid (V2G) transition," Energy Policy, Elsevier, vol. 37(3), pages 1095-1103, March.
    32. van den Bergh, Jeroen C.J.M. & Gowdy, John M., 2009. "A group selection perspective on economic behavior, institutions and organizations," Journal of Economic Behavior & Organization, Elsevier, vol. 72(1), pages 1-20, October.
    33. Pucher, John & Buehler, Ralph & Seinen, Mark, 2011. "Bicycling renaissance in North America? An update and re-appraisal of cycling trends and policies," Transportation Research Part A: Policy and Practice, Elsevier, vol. 45(6), pages 451-475, July.
    34. Rammel, Christian & van den Bergh, Jeroen C. J. M., 2003. "Evolutionary policies for sustainable development: adaptive flexibility and risk minimising," Ecological Economics, Elsevier, vol. 47(2-3), pages 121-133, December.
    35. Schipper, Lee, 2011. "Automobile use, fuel economy and CO2 emissions in industrialized countries: Encouraging trends through 2008?," Transport Policy, Elsevier, vol. 18(2), pages 358-372, March.
    36. McCollum, David & Yang, Christopher, 2009. "Achieving deep reductions in US transport greenhouse gas emissions: Scenario analysis and policy implications," Energy Policy, Elsevier, vol. 37(12), pages 5580-5596, December.
    37. Hodson, Mike & Marvin, Simon, 2010. "Can cities shape socio-technical transitions and how would we know if they were?," Research Policy, Elsevier, vol. 39(4), pages 477-485, May.
    38. Alex Haxeltine & Lorraine Whitmarsh & Noam Bergman & Jan Rotmans & Michel Schilperoord & Jonathan Kohler, 2008. "A Conceptual Framework for transition modelling," International Journal of Innovation and Sustainable Development, Inderscience Enterprises Ltd, vol. 3(1/2), pages 93-114.
    39. Sperling, Daniel & Gordon, Deborah, 2009. "Two Billion Cars: Driving Toward Sustainability," OUP Catalogue, Oxford University Press, number 9780195376647, Decembrie.
    40. Hickman, Robin & Banister, David, 2007. "Looking over the horizon: Transport and reduced CO2 emissions in the UK by 2030," Transport Policy, Elsevier, vol. 14(5), pages 377-387, September.
    41. Rajan, Sudhir Chella, 2006. "Climate change dilemma: technology, social change or both?: An examination of long-term transport policy choices in the United States," Energy Policy, Elsevier, vol. 34(6), pages 664-679, April.
    42. Smith, Adrian & Voß, Jan-Peter & Grin, John, 2010. "Innovation studies and sustainability transitions: The allure of the multi-level perspective and its challenges," Research Policy, Elsevier, vol. 39(4), pages 435-448, May.
    43. San Román, Tomás Gómez & Momber, Ilan & Abbad, Michel Rivier & Sánchez Miralles, Álvaro, 2011. "Regulatory framework and business models for charging plug-in electric vehicles: Infrastructure, agents, and commercial relationships," Energy Policy, Elsevier, vol. 39(10), pages 6360-6375, October.
    44. Markard, Jochen & Raven, Rob & Truffer, Bernhard, 2012. "Sustainability transitions: An emerging field of research and its prospects," Research Policy, Elsevier, vol. 41(6), pages 955-967.
    45. Peter E. Wells, 2010. "The Automotive Industry in an Era of Eco-Austerity," Books, Edward Elgar Publishing, number 13835.
    46. Mullan, Jonathan & Harries, David & Bräunl, Thomas & Whitely, Stephen, 2012. "The technical, economic and commercial viability of the vehicle-to-grid concept," Energy Policy, Elsevier, vol. 48(C), pages 394-406.
    47. Geoffrey Rose, 2012. "E-bikes and urban transportation: emerging issues and unresolved questions," Transportation, Springer, vol. 39(1), pages 81-96, January.
    48. Römer, Benedikt & Reichhart, Philipp & Kranz, Johann & Picot, Arnold, 2012. "The role of smart metering and decentralized electricity storage for smart grids: The importance of positive externalities," Energy Policy, Elsevier, vol. 50(C), pages 486-495.
    49. Thiel, Christian & Perujo, Adolfo & Mercier, Arnaud, 2010. "Cost and CO2 aspects of future vehicle options in Europe under new energy policy scenarios," Energy Policy, Elsevier, vol. 38(11), pages 7142-7151, November.
    50. Moloney, Susie & Horne, Ralph E. & Fien, John, 2010. "Transitioning to low carbon communities--from behaviour change to systemic change: Lessons from Australia," Energy Policy, Elsevier, vol. 38(12), pages 7614-7623, December.
    51. Mario Amendola & Jean-Luc Gaffard, 2006. "The Market Way to Riches," Books, Edward Elgar Publishing, number 4234.
    52. Giordano, Vincenzo & Fulli, Gianluca, 2012. "A business case for Smart Grid technologies: A systemic perspective," Energy Policy, Elsevier, vol. 40(C), pages 252-259.
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