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An integrated approach for modelling barriers of EVsCI

Author

Listed:
  • Ruchita

    (Indian Institute of Technology Delhi)

  • Ravi Shankar

    (Indian Institute of Technology Delhi)

Abstract

The electric vehicle (EV) industry in India faces significant challenges, particularly in developing the necessary charging infrastructure. Both EV manufacturers and charging service providers encounter obstacles in producing suitable vehicles and providing adequate infrastructure. Through Exploratory Factor Analysis (EFA), sixteen key barriers have been identified, highlighting challenges to EV adoption and providing proper infrastructure to consumers in developing countries like India. This research aims to create a comprehensive model to address these barriers using different methodologies and associated techniques such as Fuzzy Analytic Hierarchy Process (FAHP), Fuzzy Set Theory (FST), Elimination and Replacement Algorithm (ERA), and Expected Utility Theory (EUT). The barriers are categorized into technical, economic, and social groups based on experts’ opinions, ensuring consideration of all stakeholders’ welfare and their views. FAHP helps assess the weighted importance of each barrier, ERA synthesizes them considering various criteria, and EUT derives precise values for estimation. The resulting hierarchical model is designed to reduce the impact of these barriers on EV adoption and infrastructure development. This model also serves as a valuable tool for industry professionals, service providers, manufacturers, and government officials, helping them navigate challenges and create a supportive environment for the EV industry.

Suggested Citation

  • Ruchita & Ravi Shankar, 2025. "An integrated approach for modelling barriers of EVsCI," International Journal of System Assurance Engineering and Management, Springer;The Society for Reliability, Engineering Quality and Operations Management (SREQOM),India, and Division of Operation and Maintenance, Lulea University of Technology, Sweden, vol. 16(1), pages 356-376, January.
  • Handle: RePEc:spr:ijsaem:v:16:y:2025:i:1:d:10.1007_s13198-024-02623-1
    DOI: 10.1007/s13198-024-02623-1
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    1. Egbue, Ona & Long, Suzanna, 2012. "Barriers to widespread adoption of electric vehicles: An analysis of consumer attitudes and perceptions," Energy Policy, Elsevier, vol. 48(C), pages 717-729.
    2. Brownstone, David & Bunch, David S. & Train, Kenneth, 2000. "Joint mixed logit models of stated and revealed preferences for alternative-fuel vehicles," Transportation Research Part B: Methodological, Elsevier, vol. 34(5), pages 315-338, June.
    3. Saaty, Thomas L., 1990. "How to make a decision: The analytic hierarchy process," European Journal of Operational Research, Elsevier, vol. 48(1), pages 9-26, September.
    4. Wang, Ying-Ming & Luo, Ying & Hua, Zhongsheng, 2008. "On the extent analysis method for fuzzy AHP and its applications," European Journal of Operational Research, Elsevier, vol. 186(2), pages 735-747, April.
    5. Yang, Jian-Bo, 2001. "Rule and utility based evidential reasoning approach for multiattribute decision analysis under uncertainties," European Journal of Operational Research, Elsevier, vol. 131(1), pages 31-61, May.
    6. Pascal van der Straten & Bart W. Wiegmans & A. B. Schelling, 2007. "Enablers and Barriers to the Adoption of Alternatively Powered Buses," Transport Reviews, Taylor & Francis Journals, vol. 27(6), pages 679-698, January.
    7. H. Damon Matthews & Nathan P. Gillett & Peter A. Stott & Kirsten Zickfeld, 2009. "The proportionality of global warming to cumulative carbon emissions," Nature, Nature, vol. 459(7248), pages 829-832, June.
    8. Tsita, Katerina G. & Pilavachi, Petros A., 2012. "Evaluation of alternative fuels for the Greek road transport sector using the analytic hierarchy process," Energy Policy, Elsevier, vol. 48(C), pages 677-686.
    9. Malte Meinshausen & Nicolai Meinshausen & William Hare & Sarah C. B. Raper & Katja Frieler & Reto Knutti & David J. Frame & Myles R. Allen, 2009. "Greenhouse-gas emission targets for limiting global warming to 2 °C," Nature, Nature, vol. 458(7242), pages 1158-1162, April.
    10. Rachita Gupta & Ravi Shankar & Kee-Hung Lai & Ajay Kumar, 2023. "Risk profiling of food security impediments using decision maker’s behavioural preference towards operational risk management," Post-Print hal-04325680, HAL.
    11. Myles R. Allen & David J. Frame & Chris Huntingford & Chris D. Jones & Jason A. Lowe & Malte Meinshausen & Nicolai Meinshausen, 2009. "Warming caused by cumulative carbon emissions towards the trillionth tonne," Nature, Nature, vol. 458(7242), pages 1163-1166, April.
    12. She, Zhen-Yu & Qing Sun, & Ma, Jia-Jun & Xie, Bai-Chen, 2017. "What are the barriers to widespread adoption of battery electric vehicles? A survey of public perception in Tianjin, China," Transport Policy, Elsevier, vol. 56(C), pages 29-40.
    13. Ratanavaraha, Vatanavongs & Jomnonkwao, Sajjakaj, 2015. "Trends in Thailand CO2 emissions in the transportation sector and Policy Mitigation," Transport Policy, Elsevier, vol. 41(C), pages 136-146.
    14. Sierzchula, William & Bakker, Sjoerd & Maat, Kees & van Wee, Bert, 2014. "The influence of financial incentives and other socio-economic factors on electric vehicle adoption," Energy Policy, Elsevier, vol. 68(C), pages 183-194.
    15. Tran, Martino & Banister, David & Bishop, Justin D.K. & McCulloch, Malcolm D., 2013. "Simulating early adoption of alternative fuel vehicles for sustainability," Technological Forecasting and Social Change, Elsevier, vol. 80(5), pages 865-875.
    16. Ravi Shankar & Laxmi Gupta, 2024. "Modelling risks in transition from Industry 4.0 to Industry 5.0," Annals of Operations Research, Springer, vol. 342(2), pages 1275-1320, November.
    17. Nocera, Silvio & Cavallaro, Federico, 2016. "The competitiveness of alternative transport fuels for CO2 emissions," Transport Policy, Elsevier, vol. 50(C), pages 1-14.
    18. Jessica Robinson & Gary Brase & Wendy Griswold & Chad Jackson & Larry Erickson, 2014. "Business Models for Solar Powered Charging Stations to Develop Infrastructure for Electric Vehicles," Sustainability, MDPI, vol. 6(10), pages 1-30, October.
    19. Vassileva, Iana & Campillo, Javier, 2017. "Adoption barriers for electric vehicles: Experiences from early adopters in Sweden," Energy, Elsevier, vol. 120(C), pages 632-641.
    20. Bubeck, Steffen & Tomaschek, Jan & Fahl, Ulrich, 2016. "Perspectives of electric mobility: Total cost of ownership of electric vehicles in Germany," Transport Policy, Elsevier, vol. 50(C), pages 63-77.
    21. Mahamaya Mohanty & Ravi Shankar, 2019. "A hierarchical analytical model for performance management of integrated logistics," Journal of Management Analytics, Taylor & Francis Journals, vol. 6(2), pages 173-208, April.
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