Abbasi, M.H.; Taki, M.; Rajabi, A.; Li, L.; Zhang, J. Coordinated operation of electric vehicle charging and wind power generation as a virtual power plant: A multi-stage risk constrained approach. Appl. Energy 2019, 239, 1294–1307. [CrossRef]
Acedo, F.J.; Casillas, J.C. Current paradigms in the international management field: An author co-citation analysis. Int. Bus. Rev. 2005, 14, 619–639. [CrossRef]
- Åhman, M. Government policy and the development of electric vehicles in Japan. Energy Policy 2006, 34, 433–443. [CrossRef]
Paper not yet in RePEc: Add citation now
Andersen, P.H.; Mathews, J.A.; Rask, M. Integrating private transport into renewable energy policy: The strategy of creating intelligent recharging grids for electric vehicles. Energy Policy 2009, 37, 2481–2486. [CrossRef]
Barone, G.; Brusco, G.; Menniti, D.; Pinnarelli, A.; Polizzi, G.; Sorrentino, N.; Burgio, A. How Smart Metering and Smart Charging may Help a Local Energy Community in Collective Self-Consumption in Presence of Electric Vehicles. Energies 2020, 13, 4163. [CrossRef]
Beck, M.J.; Rose, J.M.; Greaves, S.P. I can’t believe your attitude: A joint estimation of best worst attitudes and electric vehicle choice. Transportation 2017, 44, 753–772. [CrossRef]
Biresselioglu, M.E.; Kaplan, M.D.; Yilmaz, B.K. Electric mobility in Europe: A comprehensive review of motivators and barriers in decision making processes. Transp. Res. A Policy Pract. 2018, 109, 1–13. [CrossRef]
Brown, S.; Pyke, D.; Steenhof, P. Electric vehicles: The role and importance of standards in an emerging market. Energy Policy 2010, 38, 3797–3806. [CrossRef]
Calero-Medina, C.; Noyons, E.C. Combining mapping and citation network analysis for a better understanding of the scientific development: The case of the absorptive capacity field. J. Informetr. 2008, 2, 272–279. [CrossRef]
Coffman, M.; Bernstein, P.; Wee, S. Electric vehicles revisited: A review of factors that affect adoption. Transp. Rev. 2017, 37, 79–93. [CrossRef]
Colmenar-Santos, A.; Borge-Diez, D.; Ortega-Cabezas, P.M.; Míguez-Camiña, J.V. Macro economic impact, reduction of fee deficit and profitability of a sustainable transport model based on electric mobility. Case study: City of León (Spain). Energy 2014, 65, 303–318. [CrossRef]
- Costa, E.; Horta, A.; Correia, A.; Seixas, J.; Costa, G.; Sperling, D. Diffusion of electric vehicles in Brazil from the stakeholders’ perspective. Int. J. Sustain. Transp. 2021, 15, 865–878. [CrossRef]
Paper not yet in RePEc: Add citation now
- Costa, E.; Seixas, J.; Baptista, P.; Costa, G.; Turrentine, T. CO2 emissions and mitigation policies for urban road transportation: Sao Paulo versus Shanghai. Urbe Rev. Bras. Gestão Urbana 2018, 10, 143–158. [CrossRef]
Paper not yet in RePEc: Add citation now
- Costa, E.; Seixas, J.; Costa, G.; Turrentine, T. Interplay between ethanol and electric vehicles as low carbon mobility options for passengers in the municipality of São Paulo. Int. J. Sustain. Transp. 2017, 11, 518–525. [CrossRef]
Paper not yet in RePEc: Add citation now
- Costa, E.; Teixeira, A.C.R.; Costa, S.C.S.; Consoni, F.L. Influence of public policies on the diffusion of wind and solar PV sources in Brazil and the possible effects of COVID-19. Renew. Sustain. Energy Rev. 2022, 162, 112449. [CrossRef]
Paper not yet in RePEc: Add citation now
- Costa, E.; Wells, P.; Wang, L.; Costa, G. The electric vehicle and renewable energy: Changes in boundary conditions that enhance business model innovations. J. Clean. Prod 2022, 333, 130034.
Paper not yet in RePEc: Add citation now
- Dale, A.; Arber, S.; Procter, M. Doing Secondary Analysis; Unwin Hyman: London, UK, 1988.
Paper not yet in RePEc: Add citation now
Di Silvestre, M.L.; Favuzza, S.; Sanseverino, E.R.; Zizzo, G. How Decarbonization, Digitalization and Decentralization are changing key power infrastructures. Renew. Sustain. Energy Rev. 2018, 93, 483–498. [CrossRef]
Dijk, M.; Iversen, E.; Klitkou, A.; Kemp, R.; Bolwig, S.; Borup, M.; Møllgaard, P. Forks in the road to e-mobility: An evaluation of instrument interaction in national policy mixes in northwest Europe. Energies 2020, 13, 475. [CrossRef]
Dranka, G.G.; Ferreira, P. Electric vehicles and biofuels synergies in the brazilian energy system. Energies 2020, 13, 4423. [CrossRef]
- Galus, M.D.; Vayá, M.G.; Krause, T.; Andersson, G. The Role of Electric Vehicles in Smart Grids. In Advances in Energy Systems; Lund, P.D., Byrne, J., Haas, R., Flynn, D., Eds.; John Wiley & Sons: Hoboken, NJ, USA, 2019.
Paper not yet in RePEc: Add citation now
- Geels, F.W.; Kemp, R.; Dudley, G.G.; Lyons, G. Automobility in Transition? A Socio-Technical Analysis of Sustainable Transport; Routledge: New York, NY, USA, 2012.
Paper not yet in RePEc: Add citation now
Green, E.H.; Skerlos, S.J.; Winebrake, J.J. Increasing electric vehicle policy efficiency and effectiveness by reducing mainstream market bias. Energy Policy 2014, 65, 562–566. [CrossRef]
- Hakim, C. Secondary Analysis in Social Research: A Guide to Data Sources and Methods with Examples; Allen and Unwin/Unwin Hyman: Sydney, Australia, 1982.
Paper not yet in RePEc: Add citation now
- Hannan, M.A.; Lipu, M.H.; Hussain, A.; Mohamed, A. A review of lithium-ion battery state of charge estimation and management system in electric vehicle applications: Challenges and recommendations. Renew. Sustain. Energy Rev. 2017, 78, 834–854. [CrossRef]
Paper not yet in RePEc: Add citation now
Hawkins, D.T. Unconventional uses of on-line Information retrieval Systems: On-line bibliometrics studies. J. Am. Soc. Inf. Sci. Technol. 1977, 28, 13–18. [CrossRef]
- Huld, A. The Status Of China’s Energy Transition and Decarbonization Commitments. China Briefing: The Status of China’s Energy Transition and Decarbonization Commitments. 2022. Available online: https://www.china-briefing.com/news/earthday -2022-whats-the-state-of-chinas-energy-transition/#:~{}:text=According%20to%20the%20National%20Energy,China\T1 \textquoterights%20total%20power%20generation%20capacity (accessed on 26 September 2022).
Paper not yet in RePEc: Add citation now
- IEA. Global Energy Review 2021, IEA, Paris. 2021. Available online: https://www.iea.org/reports/global-energy-review-2021 (accessed on 16 June 2021).
Paper not yet in RePEc: Add citation now
- IEA. Global Energy-Related CO2 Emissions by Sector, International Energy Agency (IEA), Paris, France. 2021. Available online: https://www.iea.org/data-and-statistics/charts/global-energy-related-co2-emissions-by-sector (accessed on 31 May 2021).
Paper not yet in RePEc: Add citation now
- IEA. Global EV Outlook: Global Electric Car Stock, 2010–2021, IEA, Paris. 2022. Available online: https://www.iea.org/dataand -statistics/charts/global-electric-car-stock-2010-2021 (accessed on 27 August 2022).
Paper not yet in RePEc: Add citation now
- IRENA. Renewable Energy Statistics 2022, The International Renewable Energy Agency (IRENA), United Arab Emirates. Available online: https://www.irena.org/-/media/Files/IRENA/Agency/Publication/2022/Jul/IRENA_Renewable_energy_ statistics_2022.pdf (accessed on 26 September 2022).
Paper not yet in RePEc: Add citation now
- IRENA. World Transitions Outlook: 1.50C Patway, International Renewable Energy Agency, Abu Dhabi. 2021. Available online: www.irena.org/publications (accessed on 15 June 2021).
Paper not yet in RePEc: Add citation now
- Jones, M.D.; Peterson, H.L.; Pierce, J.J.; Herweg, N.; Bernal, A.; Lamberta Raney, H.; Zahariadis, N. A river runs through it: A multiple streams meta-review. Policy Stud. J. 2016, 44, 13–36. [CrossRef]
Paper not yet in RePEc: Add citation now
- Kemp, R.; Loorbach, D.; Rotmans, J. Transition management as a model for managing processes of co-evolution towards sustainable development. Int. J. Sustain. Dev. World Ecol. 2007, 14, 78–91. [CrossRef]
Paper not yet in RePEc: Add citation now
Kester, J.; Noel, L.; de Rubens, G.Z.; Sovacool, B.K. Policy mechanisms to accelerate electric vehicle adoption: A qualitative review from the Nordic region. Renew. Sustain. Energy Rev. 2018, 94, 719–731. [CrossRef]
Krause, R.M.; Carley, S.R.; Lane, B.W.; Graham, J.D. Perception and reality: Public knowledge of plug-in electric vehicles in 21 US cities. Energy Policy 2013, 63, 433–440. [CrossRef]
- Lancaster, F.W. The Measurement and Evaluation of Library Services; Information Resources Press: Washington, DC, USA, 1977. Energies 2022, 15, 7585 19 of 19
Paper not yet in RePEc: Add citation now
Langbroek, J.H.; Franklin, J.P.; Susilo, Y.O. The effect of policy incentives on electric vehicle adoption. Energy Policy 2016, 94, 94–103. [CrossRef]
Lazzeroni, P.; Olivero, S.; Repetto, M.; Stirano, F.; Vallet, M. Optimal battery management for vehicle-to-home and vehicle-to-grid operations in a residential case study. Energy 2019, 175, 704–721. [CrossRef]
- Li, L.; Wang, Z.; Wang, Q. Do policy mix characteristics matter for electric vehicle adoption? A survey-based exploration. Transp. Res. D Trans. Environ. 2020, 87, 102488. [CrossRef]
Paper not yet in RePEc: Add citation now
- Lieven, T. Policy measures to promote electric mobility—A global perspective. Transp. Res. A Policy Pract. 2015, 82, 78–93. [CrossRef]
Paper not yet in RePEc: Add citation now
Liu, J.; Zhong, C. An economic evaluation of the coordination between electric vehicle storage and distributed renewable energy. Energy 2019, 186, 115821. [CrossRef]
Maeng, K.; Ko, S.; Shin, J.; Cho, Y. How much electricity sharing will electric vehicle owners allow from their battery? Incorporating vehicle-to-grid technology and electricity generation mix. Energies 2020, 13, 4248. [CrossRef]
- Mansouri, S.A.; Ahmarinejad, A.; Nematbakhsh, E.; Javadi, M.S.; Jordehi, A.R.; Catalão, J.P. Energy management in microgrids including smart homes: A multi-objective approach. Sustain. Cities Soc. 2021, 69, 102852. [CrossRef]
Paper not yet in RePEc: Add citation now
Mansouri, S.A.; Ahmarinejad, A.; Nematbakhsh, E.; Javadi, M.S.; Nezhad, A.E.; Catalão, J.P. A sustainable framework for multi-microgrids energy management in automated distribution network by considering smart homes and high penetration of renewable energy resources. Energy. 2022, 245, 123228. [CrossRef]
Mansouri, S.A.; Nematbakhsh, E.; Ahmarinejad, A.; Jordehi, A.R.; Javadi, M.S.; Marzband, M. A hierarchical scheduling framework for resilience enhancement of decentralized renewable-based microgrids considering proactive actions and mobile units. Renew. Sustain. Energy Rev. 2022, 168, 112854. [CrossRef]
- Matin, S.A.; Mansouri, S.A.; Bayat, M.; Jordehi, A.R.; Radmehr, P. A multi-objective bi-level optimization framework for dynamic maintenance planning of active distribution networks in the presence of energy storage systems. J. Energy Storage 2022, 52, 104762. [CrossRef]
Paper not yet in RePEc: Add citation now
Mulholland, E.; Rogan, F.; Gallachóir, B.Ó. From technology pathways to policy roadmaps to enabling measures—A multi-model approach. Energy 2017, 138, 1030–1041. [CrossRef]
Mwasilu, F.; Justo, J.J.; Kim, E.K.; Do, T.D.; Jung, J.W. Electric vehicles and smart grid interaction: A review on vehicle to grid and renewable energy sources integration. Renew. Sustain. Energy Rev. 2014, 34, 501–516. [CrossRef]
- Netherlands Enterprise Agency. Electric Vehicles Statistics in the Netherlands. 2021. Available online: https://www.rvo.nl/sites/ default/files/2021/12/electric-vehicles-statistics-in-the-netherlands.pdf (accessed on 26 September 2022).
Paper not yet in RePEc: Add citation now
Neves, S.A.; Marques, A.C.; Fuinhas, J.A. Technological progress and other factors behind the adoption of electric vehicles: Empirical evidence for EU countries. Res. Transp. Econ. 2019, 74, 28–39.
Nienhueser, I.A.; Qiu, Y. Economic and environmental impacts of providing renewable energy for electric vehicle charging—A choice experiment study. Appl. Energy 2016, 180, 256–268. [CrossRef]
- NOAA. Carbon Dioxide Peaks near 420 Parts Per Million at Mauna Loa Observatory, National Oceanic and Atmospheric Administration (NOOA) Research, USA. Available online: https://research.noaa.gov/article/ArtMID/587/ArticleID/2764 /Coronavirus-response-barely-slows-rising-carbon-dioxide (accessed on 14 June 2021).
Paper not yet in RePEc: Add citation now
- Noel, L.; de Rubens, G.Z.; Kester, J.; Sovacool, B.K. Understanding the socio-technical nexus of Nordic electric vehicle (EV) barriers: A qualitative discussion of range, price, charging and knowledge. Energy Policy 2020, 138, 111292. [CrossRef]
Paper not yet in RePEc: Add citation now
Onat, N.C.; Noori, M.; Kucukvar, M.; Zhao, Y.; Tatari, O.; Chester, M. Exploring the suitability of electric vehicles in the United States. Energy 2017, 121, 631–642. [CrossRef]
Pfeifer, A.; Krajačić, G.; Ljubas, D.; Duić, N. Increasing the integration of solar photovoltaics in energy mix on the road to low emissions energy system–Economic and environmental implications. Renew. Energy 2019, 143, 1310–1317. [CrossRef]
- REN. Renewable Generation Supplied 59% of Electricity Consumption in 2021, Portugal. 2022. Available online: https://www. ren.pt/ (accessed on 26 September 2022).
Paper not yet in RePEc: Add citation now
- Rietmann, N.; Lieven, T. How policy measures succeeded to promote electric mobility—Worldwide review and outlook. J. Clean. Prod. 2019, 206, 66–75. [CrossRef] Energies 2022, 15, 7585 18 of 19
Paper not yet in RePEc: Add citation now
Sierzchula, W.; Bakker, S.; Maat, K.; Van Wee, B. The influence of financial incentives and other socio-economic factors on electric vehicle adoption. Energy Policy 2014, 68, 183–194. [CrossRef]
- Sovacool, B.K.; Axsen, J.; Sorrell, S. Promoting novelty, rigor, and style in energy social science: Towards codes of practice for appropriate methods and research design. Energy Res. Soc. Sci. 2018, 45, 12–42. [CrossRef]
Paper not yet in RePEc: Add citation now
Sovacool, B.K.; Hirsh, R.F. 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 2009, 37, 1095–1103. [CrossRef]
- The Peoples Republic of China-National Energy Administration: The Status of China’s Energy Transition and Decarbonization Commitments, China. 2022. Available online: http://english.www.gov.cn/ (accessed on 26 September 2022).
Paper not yet in RePEc: Add citation now
Thiel, C.; Julea, A.; Acosta Iborra, B.; De Miguel Echevarria, N.; Peduzzi, E.; Pisoni, E.; Krause, J. Assessing the impacts of electric vehicle recharging infrastructure deployment efforts in the European Union. Energies 2019, 12, 2409. [CrossRef]
Thiel, C.; Tsakalidis, A.; Jäger-Waldau, A. Will electric vehicles be killed (again) or are they the next mobility killer app? Energies 2020, 13, 1828. [CrossRef]
- United Nations. Energy Statistics Pocketbook 2022, Department of Economic and Social Affairs, USA. Available online: https: //unstats.un.org/unsd/energystats/pubs/documents/2022pb-web.pdf (accessed on 26 September 2022).
Paper not yet in RePEc: Add citation now
- US Energy. US Energy Information Administration: Short-Term Energy Outlook 2022, USA. Available online: https://www.eia. gov/outlooks/steo/pdf/steo_full.pdf (accessed on 26 September 2022).
Paper not yet in RePEc: Add citation now
Wee, S.; Coffman, M.; La Croix, S. Do electric vehicle incentives matter? Evidence from the 50 US states. Res. Policy 2018, 47, 1601–1610. [CrossRef]
Wells, P.; Nieuwenhuis, P. Transition failure: Understanding continuity in the automotive industry. Technol. Forecast. Soc. Chang. 2012, 79, 1681–1692. [CrossRef]
Xu, L.; Su, J. From government to market and from producer to consumer: Transition of policy mix towards clean mobility in China. Energy Policy 2016, 96, 328–340. [CrossRef]
Zhang, L.; Zhao, Z.; Yang, M.; Li, S. A multi-criteria decision method for performance evaluation of public charging service quality. Energy 2020, 195, 116958. [CrossRef]