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Kayo Murakami

Personal Details

First Name:Kayo
Middle Name:
Last Name:Murakami
Suffix:
RePEc Short-ID:pmu553
[This author has chosen not to make the email address public]
http://www.econ.kyoto-u.ac.jp/smartgrid/member_murakami

Affiliation

School of Economics
Kwansei Gakuin University

Hyogo, Japan
http://www.kwansei.ac.jp/s_economics/
RePEc:edi:dekgujp (more details at EDIRC)

Research output

as
Jump to: Working papers Articles

Working papers

  1. Kayo MURAKAMI & Hideki SHIMADA & Yoshiaki USHIFUSA & Takanori IDA, 2020. "Heterogeneous Treatment Effects of Nudge and Rebate:Causal Machine Learning in a Field Experiment on Electricity Conservation," Discussion papers e-20-003, Graduate School of Economics , Kyoto University.
  2. Kayo MURAKAMI & Takanori IDA, 2019. "Deregulation and status quo bias: Evidence from stated and revealed switching behaviors in the electricity market in Japan," Discussion papers e-19-001, Graduate School of Economics , Kyoto University.
  3. Takanori Ida & Kayo Murakami & Makoto Tanaka, 2015. "Electricity demand response in Japan:Experimental evidence from a residential photovoltaic generation system," Discussion papers e-15-006, Graduate School of Economics Project Center, Kyoto University.
  4. Takanori Ida & Kayo Murakami & Makoto Tanaka, 2012. "Keys to Smart Home Diffusion: A Stated Preference Analysis of Smart Meters, Photovoltaic Generation, and Electric/Hybrid Vehicles," Discussion papers e-11-011, Graduate School of Economics Project Center, Kyoto University.
  5. YUKIMOTO Tadashi & MURAKAMI Kayo & MARUYAMA Tatsuya, 2011. "Consumer Policy and Resource Management(in Japanese)," ESRI Discussion paper series 271, Economic and Social Research Institute (ESRI).

Articles

  1. Kayo Murakami & Hideki Shimada & Yoshiaki Ushifusa & Takanori Ida, 2022. "Heterogeneous Treatment Effects Of Nudge And Rebate: Causal Machine Learning In A Field Experiment On Electricity Conservation," International Economic Review, Department of Economics, University of Pennsylvania and Osaka University Institute of Social and Economic Research Association, vol. 63(4), pages 1779-1803, November.
  2. Kayo Murakami & Norihiro Itsubo & Koichi Kuriyama, 2022. "Explaining the diverse values assigned to environmental benefits across countries," Nature Sustainability, Nature, vol. 5(9), pages 753-761, September.
  3. Murakami, Kayo & Ida, Takanori & Tanaka, Makoto & Friedman, Lee, 2015. "Consumers' willingness to pay for renewable and nuclear energy: A comparative analysis between the US and Japan," Energy Economics, Elsevier, vol. 50(C), pages 178-189.
  4. Tanaka, Makoto & Ida, Takanori & Murakami, Kayo & Friedman, Lee, 2014. "Consumers’ willingness to pay for alternative fuel vehicles: A comparative discrete choice analysis between the US and Japan," Transportation Research Part A: Policy and Practice, Elsevier, vol. 70(C), pages 194-209.

Citations

Many of the citations below have been collected in an experimental project, CitEc, where a more detailed citation analysis can be found. These are citations from works listed in RePEc that could be analyzed mechanically. So far, only a minority of all works could be analyzed. See under "Corrections" how you can help improve the citation analysis.

Working papers

  1. Kayo MURAKAMI & Hideki SHIMADA & Yoshiaki USHIFUSA & Takanori IDA, 2020. "Heterogeneous Treatment Effects of Nudge and Rebate:Causal Machine Learning in a Field Experiment on Electricity Conservation," Discussion papers e-20-003, Graduate School of Economics , Kyoto University.

    Cited by:

    1. Olga Takács & János Vincze, 2023. "Heterogeneous wage structure effects: a partial European East-West comparison," CERS-IE WORKING PAPERS 2305, Institute of Economics, Centre for Economic and Regional Studies.
    2. Ankinée KIRAKOZIAN & Raphaël CHIAPPINI & Nabila ARFAOUI, 2023. "Nudging employees for greener mobility A field experiment," Bordeaux Economics Working Papers 2023-09, Bordeaux School of Economics (BSE).
    3. Patrick Rehill & Nicholas Biddle, 2023. "Fairness Implications of Heterogeneous Treatment Effect Estimation with Machine Learning Methods in Policy-making," Papers 2309.00805, arXiv.org.
    4. Takanori Ida & Takunori Ishihara & Koichiro Ito & Daido Kido & Toru Kitagawa & Shosei Sakaguchi & Shusaku Sasaki, 2021. "Paternalism, Autonomy, or Both? Experimental Evidence from Energy Saving Programs," Papers 2112.09850, arXiv.org.
    5. Harpenau, Franziska & Magalhaes, Katrin Marques & Steffen, Nico & Wiewiorra, Lukas, 2023. "Saving behaviors of private households under varying tariff structures, price levels and incentives - Experimental evidence," WIK Working Papers 7, WIK Wissenschaftliches Institut für Infrastruktur und Kommunikationsdienste GmbH, Bad Honnef.
    6. Mark Kattenberg & Bas Scheer & Jurre Thiel, 2023. "Causal forests with fixed effects for treatment effect heterogeneity in difference-in-differences," CPB Discussion Paper 452, CPB Netherlands Bureau for Economic Policy Analysis.
    7. Toshi H. Arimura & Elke D. Groh & Miwa Nakai & Andreas Ziegler, 2022. "The causal effect of private and organizational climate-related identity on climate protection activities: Evidence from a framed field experiment in Japan," MAGKS Papers on Economics 202229, Philipps-Universität Marburg, Faculty of Business Administration and Economics, Department of Economics (Volkswirtschaftliche Abteilung).
    8. Al-Ubaydli, Omar & Cassidy, Alecia & Chatterjee, Anomitro & Khalifa, Ahmed & Price, Michael, 2023. "The power to conserve: a field experiment on electricity use in Qatar," LSE Research Online Documents on Economics 121048, London School of Economics and Political Science, LSE Library.
    9. von Zahn, Moritz & Bauer, Kevin & Mihale-Wilson, Cristina & Jagow, Johanna & Speicher, Max & Hinz, Oliver, 2022. "The smart green nudge: Reducing product returns through enriched digital footprints & causal machine learning," SAFE Working Paper Series 363, Leibniz Institute for Financial Research SAFE, revised 2022.
    10. Olga Takács & János Vincze, 2023. "Where is the pain the most acute? The market segments particularly affected by gender wage discrimination in Hungary," CERS-IE WORKING PAPERS 2304, Institute of Economics, Centre for Economic and Regional Studies.
    11. Alt, Marius, 2021. "Committing to behave pro-environmentally: An assessment of time and regulatee-size effects on the demand for environmental regulation," VfS Annual Conference 2021 (Virtual Conference): Climate Economics 242419, Verein für Socialpolitik / German Economic Association.

  2. Takanori Ida & Kayo Murakami & Makoto Tanaka, 2015. "Electricity demand response in Japan:Experimental evidence from a residential photovoltaic generation system," Discussion papers e-15-006, Graduate School of Economics Project Center, Kyoto University.

    Cited by:

    1. Melike E. Bildirici, 2020. "Environmental pollution, hydropower and nuclear energy generation before and after catastrophe: Bathtub‐Weibull curve and MS‐VECM methods," Natural Resources Forum, Blackwell Publishing, vol. 44(4), pages 289-310, November.
    2. Weber, Sylvain & Puddu, Stefano & Pacheco, Diana, 2017. "Move it! How an electric contest motivates households to shift their load profile," Energy Economics, Elsevier, vol. 68(C), pages 255-270.

  3. Takanori Ida & Kayo Murakami & Makoto Tanaka, 2012. "Keys to Smart Home Diffusion: A Stated Preference Analysis of Smart Meters, Photovoltaic Generation, and Electric/Hybrid Vehicles," Discussion papers e-11-011, Graduate School of Economics Project Center, Kyoto University.

    Cited by:

    1. Rihar, Miha & Hrovatin, Nevenka & Zoric, Jelena, 2015. "Household valuation of smart-home functionalities in Slovenia," Utilities Policy, Elsevier, vol. 33(C), pages 42-53.

Articles

  1. Kayo Murakami & Hideki Shimada & Yoshiaki Ushifusa & Takanori Ida, 2022. "Heterogeneous Treatment Effects Of Nudge And Rebate: Causal Machine Learning In A Field Experiment On Electricity Conservation," International Economic Review, Department of Economics, University of Pennsylvania and Osaka University Institute of Social and Economic Research Association, vol. 63(4), pages 1779-1803, November.
    See citations under working paper version above.
  2. Murakami, Kayo & Ida, Takanori & Tanaka, Makoto & Friedman, Lee, 2015. "Consumers' willingness to pay for renewable and nuclear energy: A comparative analysis between the US and Japan," Energy Economics, Elsevier, vol. 50(C), pages 178-189.

    Cited by:

    1. Shin Kinoshita, 2020. "Conjoint analysis of Japanese households’ energy-saving behavior after the earthquake: The role of the preferences for renewable energy," Energy & Environment, , vol. 31(4), pages 676-691, June.
    2. Balezentis, Tomas & Streimikiene, Dalia & Mikalauskas, Ignas & Shen, Zhiyang, 2021. "Towards carbon free economy and electricity: The puzzle of energy costs, sustainability and security based on willingness to pay," Energy, Elsevier, vol. 214(C).
    3. Kim, Hyunggeun & Park, Sangkyu & Lee, Jongsu, 2021. "Is renewable energy acceptable with power grid expansion? A quantitative study of South Korea's renewable energy acceptance," Renewable and Sustainable Energy Reviews, Elsevier, vol. 139(C).
    4. Gunnar Gutsche & Andreas Ziegler, 2016. "Are private investors willing to pay for sustainable investments? A stated choice experiment," MAGKS Papers on Economics 201640, Philipps-Universität Marburg, Faculty of Business Administration and Economics, Department of Economics (Volkswirtschaftliche Abteilung).
    5. Faure, Corinne & Guetlein, Marie-Charlotte & Schleich, Joachim & Tu, Gengyang & Whitmarsh, Lorraine & Whittle, Colin, 2022. "Household acceptability of energy efficiency policies in the European Union: Policy characteristics trade-offs and the role of trust in government and environmental identity," Ecological Economics, Elsevier, vol. 192(C).
    6. Anna Kowalska-Pyzalska & David Ramsey, 2018. "Household willingness to pay for green electricity in Poland," HSC Research Reports HSC/18/04, Hugo Steinhaus Center, Wroclaw University of Technology.
    7. Miwa Nakai & Victor von Loessl & Heike Wetzel, 2022. "Preferences for dynamic electricity tariffs: A comparison of households in Germany and Japan," MAGKS Papers on Economics 202213, Philipps-Universität Marburg, Faculty of Business Administration and Economics, Department of Economics (Volkswirtschaftliche Abteilung).
    8. Katrin Rehdanz & Carsten Schroeder & Daiju Narita & Toshihiro Okubo, 2015. "Public Preferences for Alternative Electricity Mixes in Post-Fukushima Japan," Keio-IES Discussion Paper Series 2015-013, Institute for Economics Studies, Keio University.
    9. Takanori Ida, Kayo Murakami, and Makoto Tanaka, 2016. "Electricity demand response in Japan: Experimental evidence from a residential photovoltaic power-generation system," Economics of Energy & Environmental Policy, International Association for Energy Economics, vol. 0(Number 1).
    10. Tiwari, Aviral Kumar & Albulescu, Claudiu Tiberiu, 2016. "Renewable-to-total electricity consumption ratio: Estimating the permanent or transitory fluctuations based on flexible Fourier stationarity and unit root tests," Renewable and Sustainable Energy Reviews, Elsevier, vol. 57(C), pages 1409-1427.
    11. Rommel, Jens & Sagebiel, Julian & Müller, Jakob R., 2015. "Quality Uncertainty and the Market for Renewable Energy: Evidence from German Consumers," MPRA Paper 66195, University Library of Munich, Germany.
    12. Pelau, Corina & Pop, Nicolae Al., 2018. "Implications for the energy policy derived from the relation between the cultural dimensions of Hofstede's model and the consumption of renewable energies," Energy Policy, Elsevier, vol. 118(C), pages 160-168.
    13. Xie, Bai-Chen & Zhao, Wei, 2018. "Willingness to pay for green electricity in Tianjin, China: Based on the contingent valuation method," Energy Policy, Elsevier, vol. 114(C), pages 98-107.
    14. Zailin Zainal Ariffin & Norsuhada Isa & Muhammad Quisar Lokman & Norasikin Ahmad Ludin & Sufian Jusoh & Mohd Adib Ibrahim, 2022. "Consumer Acceptance of Renewable Energy in Peninsular Malaysia," Sustainability, MDPI, vol. 14(21), pages 1-20, November.
    15. Mara Hammerle & Paul Crosby & Rohan Best, 2021. "Super‐sizing Renewable Energy Investment: Examining the Portfolio Preferences of Superannuation Fund Members," The Economic Record, The Economic Society of Australia, vol. 97(317), pages 267-284, June.
    16. Nomsa Phindile Nkosi & Johane Dikgang, 2021. "South African Attitudes About Nuclear Power: The Case of the Nuclear Energy Expansion," International Journal of Energy Economics and Policy, Econjournals, vol. 11(5), pages 138-146.
    17. Oerlemans, Leon A.G. & Chan, Kai-Ying & Volschenk, Jako, 2016. "Willingness to pay for green electricity: A review of the contingent valuation literature and its sources of error," Renewable and Sustainable Energy Reviews, Elsevier, vol. 66(C), pages 875-885.
    18. Contu, Davide & Strazzera, Elisabetta, 2022. "Testing for saliency-led choice behavior in discrete choice modeling: An application in the context of preferences towards nuclear energy in Italy," Journal of choice modelling, Elsevier, vol. 44(C).
    19. Irie, Noriko & Kawahara, Naoko, 2022. "Consumer preferences for local renewable electricity production in Japan: A choice experiment," Renewable Energy, Elsevier, vol. 182(C), pages 1171-1181.
    20. Takanori Ida & Kayo Murakami & Makoto Tanaka, 2015. "Electricity demand response in Japan:Experimental evidence from a residential photovoltaic generation system," Discussion papers e-15-006, Graduate School of Economics Project Center, Kyoto University.
    21. Gutsche, Gunnar & Ziegler, Andreas, 2019. "Which private investors are willing to pay for sustainable investments? Empirical evidence from stated choice experiments," Journal of Banking & Finance, Elsevier, vol. 102(C), pages 193-214.
    22. Andreas Ziegler, 2018. "Heterogeneous preferences and the individual change to alternative electricity contracts," MAGKS Papers on Economics 201827, Philipps-Universität Marburg, Faculty of Business Administration and Economics, Department of Economics (Volkswirtschaftliche Abteilung).
    23. Liobikienė, Genovaitė & Miceikienė, Astrida, 2022. "The role of financial, social and informational mechanisms on willingness to use bioenergy," Renewable Energy, Elsevier, vol. 194(C), pages 21-27.
    24. Contu, Davide & Strazzera, Elisabetta & Mourato, Susana, 2016. "Modeling individual preferences for energy sources: The case of IV generation nuclear energy in Italy," Ecological Economics, Elsevier, vol. 127(C), pages 37-58.
    25. Zeng, Ming & Yang, Yongqi & Wang, Lihua & Sun, Jinghui, 2016. "The power industry reform in China 2015: Policies, evaluations and solutions," Renewable and Sustainable Energy Reviews, Elsevier, vol. 57(C), pages 94-110.
    26. Toshihiro Okubo & Daiju Narita & Katrin Rehdanz & Carsten Schroeder, 2020. "Preferences for nuclear power in post-Fukushima Japan: Evidence from a large nationwide household survey," Keio-IES Discussion Paper Series 2020-003, Institute for Economics Studies, Keio University.
    27. Rohan Best & Paul J. Burke, 2018. "Adoption of solar and wind energy: The roles of carbon pricing and aggregate policy support," CCEP Working Papers 1803, Centre for Climate & Energy Policy, Crawford School of Public Policy, The Australian National University.
    28. Kayo MURAKAMI & Takanori IDA, 2019. "Deregulation and status quo bias: Evidence from stated and revealed switching behaviors in the electricity market in Japan," Discussion papers e-19-001, Graduate School of Economics , Kyoto University.
    29. Ossokina, Ioulia V. & Kerperien, Stephan & Arentze, Theo A., 2021. "Does information encourage or discourage tenants to accept energy retrofitting of homes?," Energy Economics, Elsevier, vol. 103(C).
    30. Lin, Boqiang & Qiao, Qiao, 2023. "Exploring the participation willingness and potential carbon emission reduction of Chinese residential green electricity market," Energy Policy, Elsevier, vol. 174(C).
    31. Takunori Ishihara & Takanori Ida, 2022. "The Effect of Information Provision on Stated and Revealed Preferences: A Field Experiment on the Choice of Power Tariffs Before and After Japanese Retail Electricity Liberalization," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 82(3), pages 573-599, July.
    32. Gao, Lu & Hiruta, Yuki & Ashina, Shuichi, 2020. "Promoting renewable energy through willingness to pay for transition to a low carbon society in Japan," Renewable Energy, Elsevier, vol. 162(C), pages 818-830.
    33. Kim, Ju-Hee & Yoo, Seung-Hoon, 2021. "Comparison of the economic effects of nuclear power and renewable energy deployment in South Korea," Renewable and Sustainable Energy Reviews, Elsevier, vol. 135(C).
    34. Paravantis, John A. & Stigka, Eleni & Mihalakakou, Giouli & Michalena, Evanthie & Hills, Jeremy M. & Dourmas, Vasilis, 2018. "Social acceptance of renewable energy projects: A contingent valuation investigation in Western Greece," Renewable Energy, Elsevier, vol. 123(C), pages 639-651.
    35. Aleksandra Sus & Rafał Trzaska & Maciej Wilczyński & Joanna Hołub-Iwan, 2023. "Strategies of Energy Suppliers and Consumer Awareness in Green Energy Optics," Energies, MDPI, vol. 16(4), pages 1-23, February.
    36. Woo, JongRoul & Moon, Sungho & Choi, Hyunhong, 2022. "Economic value and acceptability of advanced solar power systems for multi-unit residential buildings: The case of South Korea," Applied Energy, Elsevier, vol. 324(C).
    37. Johane Dikgang & Nomsa P. Nkosi, 2018. "South African attitudes about nuclear power: The case of the nuclear energy expansion," Working Papers 726, Economic Research Southern Africa.
    38. Itaoka, Kenshi & Chapman, Andrew & Farabi-Asl, Hadi, 2022. "Underpinnings of consumer preferences and participation in Japan's liberalized energy market," Utilities Policy, Elsevier, vol. 76(C).
    39. Lee, Chien-Chiang & Wang, Chih-Wei & Ho, Shan-Ju & Wu, Ting-Pin, 2021. "The impact of natural disaster on energy consumption: International evidence," Energy Economics, Elsevier, vol. 97(C).
    40. Anna Kowalska-Pyzalska, 2019. "Do Consumers Want to Pay for Green Electricity? A Case Study from Poland," Sustainability, MDPI, vol. 11(5), pages 1-20, March.
    41. Makiko Nakano, 2023. "Examining Preference for Energy-Related Information through a Choice Experiment," Energies, MDPI, vol. 16(5), pages 1-15, March.
    42. Ziegler, Andreas, 2020. "Heterogeneous preferences and the individual change to alternative electricity contracts," Energy Economics, Elsevier, vol. 91(C).
    43. Martínez-Cruz, Adán L. & Núñez, Héctor M., 2021. "Tension in Mexico's energy transition: Are urban residential consumers in Aguascalientes willing to pay for renewable energy and green jobs?," Energy Policy, Elsevier, vol. 150(C).
    44. Salm, Sarah & Wüstenhagen, Rolf, 2018. "Dream team or strange bedfellows? Complementarities and differences between incumbent energy companies and institutional investors in Swiss hydropower," Energy Policy, Elsevier, vol. 121(C), pages 476-487.
    45. Reeko Watanabe & Tsunemi Watanabe & Kyohei Wakui, 2021. "Acceptance of Main Power Generation Sources among Japan’s Undergraduate Students: The Roles of Knowledge, Experience, Trust, and Perceived Risk and Benefit," Sustainability, MDPI, vol. 13(22), pages 1, November.
    46. Kalkbrenner, Bernhard J. & Yonezawa, Koichi & Roosen, Jutta, 2017. "Consumer preferences for electricity tariffs: Does proximity matter?," Energy Policy, Elsevier, vol. 107(C), pages 413-424.
    47. Kim, Junghun & Park, Stephen Youngjun & Lee, Jongsu, 2018. "Do people really want renewable energy? Who wants renewable energy?: Discrete choice model of reference-dependent preference in South Korea," Energy Policy, Elsevier, vol. 120(C), pages 761-770.
    48. Osiolo, Helen Hoka, 2017. "Willingness to pay for improved energy: Evidence from Kenya," Renewable Energy, Elsevier, vol. 112(C), pages 104-112.
    49. Barry W. Brook & Tom Blees & Tom M. L. Wigley & Sanghyun Hong, 2018. "Silver Buckshot or Bullet: Is a Future “Energy Mix” Necessary?," Sustainability, MDPI, vol. 10(2), pages 1-14, January.
    50. Ziegler, Andreas, 2018. "Heterogeneous preferences and the individual change to alternative electricity tariffs," VfS Annual Conference 2018 (Freiburg, Breisgau): Digital Economy 181604, Verein für Socialpolitik / German Economic Association.
    51. Jones, Benjamin A. & Berrens, Robert P. & Jenkins-Smith, Hank & Silva, Carol & Ripberger, Joe & Carlson, Deven & Gupta, Kuhika & Wehde, Wesley, 2018. "In search of an inclusive approach: Measuring non-market values for the effects of complex dam, hydroelectric and river system operations," Energy Economics, Elsevier, vol. 69(C), pages 225-236.
    52. Dong, Changgui & Sigrin, Benjamin, 2019. "Using willingness to pay to forecast the adoption of solar photovoltaics: A “parameterization + calibration” approach," Energy Policy, Elsevier, vol. 129(C), pages 100-110.

  3. Tanaka, Makoto & Ida, Takanori & Murakami, Kayo & Friedman, Lee, 2014. "Consumers’ willingness to pay for alternative fuel vehicles: A comparative discrete choice analysis between the US and Japan," Transportation Research Part A: Policy and Practice, Elsevier, vol. 70(C), pages 194-209.

    Cited by:

    1. Jose Esteves & Daniel Alonso-Martínez & Guillermo de Haro, 2021. "Profiling Spanish Prospective Buyers of Electric Vehicles Based on Demographics," Sustainability, MDPI, vol. 13(16), pages 1-22, August.
    2. Wolff, Stefanie & Madlener, Reinhard, 2019. "Charged up? Preferences for Electric Vehicle Charging and Implications for Charging Infrastructure Planning," FCN Working Papers 3/2019, E.ON Energy Research Center, Future Energy Consumer Needs and Behavior (FCN).
    3. Milan Scasny & Milan Scasny & Iva Zverinova & Mikolaj Czajkowski, 2015. "Individual preference for the alternative fuel vehicles and their attributes in Poland," EcoMod2015 8575, EcoMod.
    4. Kwon, Yeongmin & Son, Sanghoon & Jang, Kitae, 2018. "Evaluation of incentive policies for electric vehicles: An experimental study on Jeju Island," Transportation Research Part A: Policy and Practice, Elsevier, vol. 116(C), pages 404-412.
    5. Ko, Sungmin & Shin, Jungwoo, 2023. "Projection of fuel cell electric vehicle demand reflecting the feedback effects between market conditions and market share affected by spatial factors," Energy Policy, Elsevier, vol. 173(C).
    6. Bas, Javier & Zofío, José L. & Cirillo, Cinzia & Chen, Hao & Rakha, Hesham A., 2022. "Policy and industry implications of the potential market penetration of electric vehicles with eco-cooperative adaptive cruise control," Transportation Research Part A: Policy and Practice, Elsevier, vol. 164(C), pages 242-256.
    7. Mustafa Hamurcu & Tamer Eren, 2023. "Multicriteria decision making and goal programming for determination of electric automobile aimed at sustainable green environment: a case study," Environment Systems and Decisions, Springer, vol. 43(2), pages 211-231, June.
    8. Qian, Lixian & Grisolía, Jose M. & Soopramanien, Didier, 2019. "The impact of service and government-policy attributes on consumer preferences for electric vehicles in China," Transportation Research Part A: Policy and Practice, Elsevier, vol. 122(C), pages 70-84.
    9. Reema Bera & Bhargab Maitra, 2021. "Analyzing Prospective Owners’ Choice Decision towards Plug-in Hybrid Electric Vehicles in Urban India: A Stated Preference Discrete Choice Experiment," Sustainability, MDPI, vol. 13(14), pages 1-24, July.
    10. Giansoldati, Marco & Danielis, Romeo & Rotaris, Lucia & Scorrano, Mariangela, 2018. "The role of driving range in consumers' purchasing decision for electric cars in Italy," Energy, Elsevier, vol. 165(PA), pages 267-274.
    11. Rosales-Tristancho, Abel & Carazo, Ana F. & Brey, Raúl, 2021. "A study of the willingness of Spanish drivers to pay a premium for ZEVs," Energy Policy, Elsevier, vol. 149(C).
    12. Elnaz Abotalebi & Mark R. Ferguson & Moataz Mohamed & Darren M. Scott, 2020. "Design of a survey to assess prospects for consumer electric mobility in Canada: a retrospective appraisal," Transportation, Springer, vol. 47(3), pages 1223-1250, June.
    13. Sousa, Nuno & Almeida, Arminda & Coutinho-Rodrigues, João, 2020. "A multicriteria methodology for estimating consumer acceptance of alternative powertrain technologies," Transport Policy, Elsevier, vol. 85(C), pages 18-32.
    14. Hossein Abouee‐Mehrizi & Opher Baron & Oded Berman & David Chen, 2021. "Adoption of Electric Vehicles in Car Sharing Market," Production and Operations Management, Production and Operations Management Society, vol. 30(1), pages 190-209, January.
    15. Liao, Fanchao & Molin, Eric & Timmermans, Harry & van Wee, Bert, 2018. "The impact of business models on electric vehicle adoption: A latent transition analysis approach," Transportation Research Part A: Policy and Practice, Elsevier, vol. 116(C), pages 531-546.
    16. Bera, Reema & Maitra, Bhargab, 2021. "Assessing consumer preferences for Plug-in Hybrid Electric Vehicle (PHEV): An Indian perspective," Research in Transportation Economics, Elsevier, vol. 90(C).
    17. Yahong Jiang & Qunqi Wu & Min Li & Yulei Gu & Jun Yang, 2023. "What Is Affecting the Popularity of New Energy Vehicles? A Systematic Review Based on the Public Perspective," Sustainability, MDPI, vol. 15(18), pages 1-29, September.
    18. Chiambaretto, Paul, 2021. "Air passengers’ willingness to pay for ancillary services on long-haul flights," Transportation Research Part E: Logistics and Transportation Review, Elsevier, vol. 147(C).
    19. Yan, Jianghui & Tseng, Fang-Mei & Lu, Louis Y.Y., 2018. "Developmental trajectories of new energy vehicle research in economic management: Main path analysis," Technological Forecasting and Social Change, Elsevier, vol. 137(C), pages 168-181.
    20. Daan Hulshof & Machiel Mulder, 2020. "Willingness to Pay for $$\hbox {CO}_2$$CO2 Emission Reductions in Passenger Car Transport," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 75(4), pages 899-929, April.
    21. Pacharaporn Arkornsakul & Woraphon Yamaka & Sombat Singkharat, 2015. "Consumer?s Willingness to Pay for Gasohol E100 in Chiang Mai Province and Nakhon Ratchasima Province," Proceedings of International Academic Conferences 2704676, International Institute of Social and Economic Sciences.
    22. Jose J. Soto & Victor Cantillo & Julian Arellana, 2018. "Incentivizing alternative fuel vehicles: the influence of transport policies, attitudes and perceptions," Transportation, Springer, vol. 45(6), pages 1721-1753, November.
    23. Bergantino, Angela Stefania & Capozza, Claudia & Intini, Mario, 2018. "Empirical investigation of retail gasoline prices," Working Papers 18_4, SIET Società Italiana di Economia dei Trasporti e della Logistica.
    24. Brand, Christian & Cluzel, Celine & Anable, Jillian, 2017. "Modeling the uptake of plug-in vehicles in a heterogeneous car market using a consumer segmentation approach," Transportation Research Part A: Policy and Practice, Elsevier, vol. 97(C), pages 121-136.
    25. Iogansen, Xiatian & Wang, Kailai & Bunch, David & Matson, Grant & Circella, Giovanni, 2023. "Deciphering the factors associated with adoption of alternative fuel vehicles in California: An investigation of latent attitudes, socio-demographics, and neighborhood effects," Transportation Research Part A: Policy and Practice, Elsevier, vol. 168(C).
    26. Ruoso, Ana Cristina & Ribeiro, José Luis Duarte, 2022. "An assessment of barriers and solutions for the deployment of electric vehicles in the Brazilian market," Transport Policy, Elsevier, vol. 127(C), pages 218-229.
    27. Ma, Shao-Chao & Xu, Jin-Hua & Fan, Ying, 2019. "Willingness to pay and preferences for alternative incentives to EV purchase subsidies: An empirical study in China," Energy Economics, Elsevier, vol. 81(C), pages 197-215.
    28. Linzenich, Anika & Arning, Katrin & Bongartz, Dominik & Mitsos, Alexander & Ziefle, Martina, 2019. "What fuels the adoption of alternative fuels? Examining preferences of German car drivers for fuel innovations," Applied Energy, Elsevier, vol. 249(C), pages 222-236.
    29. Oerlemans, Leon A.G. & Chan, Kai-Ying & Volschenk, Jako, 2016. "Willingness to pay for green electricity: A review of the contingent valuation literature and its sources of error," Renewable and Sustainable Energy Reviews, Elsevier, vol. 66(C), pages 875-885.
    30. Roberto Ruggieri & Marco Ruggeri & Giuliana Vinci & Stefano Poponi, 2021. "Electric Mobility in a Smart City: European Overview," Energies, MDPI, vol. 14(2), pages 1-29, January.
    31. Wolinetz, Michael & Axsen, Jonn, 2017. "How policy can build the plug-in electric vehicle market: Insights from the REspondent-based Preference And Constraints (REPAC) model," Technological Forecasting and Social Change, Elsevier, vol. 117(C), pages 238-250.
    32. Danielis, Romeo & Scorrano, Mariangela & Giansoldati, Marco & Rotaris, Lucia, 2019. "A meta-analysis of the importance of the driving range in consumers’ preference studies for battery electric vehicles," Working Papers 19_2, SIET Società Italiana di Economia dei Trasporti e della Logistica.
    33. Irani, Alexandra & Chalak, Ali, 2015. "Harnessing motorists’ potential demand for hybrid-electric vehicles in Lebanon: Policy options, CO2 emissions reduction and welfare gains," Transport Policy, Elsevier, vol. 42(C), pages 144-155.
    34. Yang, J. & Chen, F., 2021. "How are social-psychological factors related to consumer preferences for plug-in electric vehicles? Case studies from two cities in China," Renewable and Sustainable Energy Reviews, Elsevier, vol. 149(C).
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NEP is an announcement service for new working papers, with a weekly report in each of many fields. This author has had 3 papers announced in NEP. These are the fields, ordered by number of announcements, along with their dates. If the author is listed in the directory of specialists for this field, a link is also provided.
  1. NEP-ENE: Energy Economics (3) 2015-09-11 2019-04-15 2020-09-21
  2. NEP-REG: Regulation (3) 2015-09-11 2019-04-15 2020-09-21
  3. NEP-EXP: Experimental Economics (2) 2015-09-11 2020-09-21
  4. NEP-BIG: Big Data (1) 2020-09-21
  5. NEP-COM: Industrial Competition (1) 2019-04-15
  6. NEP-DCM: Discrete Choice Models (1) 2019-04-15

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