Exploring Carsharing Diffusion Challenges through Systems Thinking and Causal Loop Diagrams
暂无分享,去创建一个
[1] F. Sprei,et al. Drivers and barriers to business-to-business carsharing for work trips – A case study of Gothenburg, Sweden , 2022, Case Studies on Transport Policy.
[2] B. Yannou,et al. Product-level circularity metrics based on the “Closing–Slowing Future–Past” quadrant model , 2022, Sustainable Production and Consumption.
[3] J. Borghi,et al. How to do (or not to do)…using causal loop diagrams for health system research in low and middle-income settings , 2022, Health policy and planning.
[4] G. Mingardo,et al. Governance and business policy impact on carsharing diffusion in European cities , 2022, Transportation Research Part D: Transport and Environment.
[5] Feng Chen,et al. What Car for Car-Sharing? Conventional, Electric, Hybrid or Hydrogen Fleet? Analysis of the Vehicle Selection Criteria for Car-Sharing Systems , 2022, Energies.
[6] Meisam Ranjbari,et al. The imbalance of food and biofuel markets amid Ukraine-Russia crisis: A systems thinking perspective , 2022, Biofuel Research Journal.
[7] M. Diana,et al. A review of the socio-demographic characteristics affecting the demand for different car-sharing operational schemes , 2022, Transportation Research Interdisciplinary Perspectives.
[8] Pengpeng Jiao,et al. Does Policy Matter in Carsharing Traveling? Evolution Game Model-Based Carsharing and Private Car Study , 2022, Journal of Advanced Transportation.
[9] J. M. Vassallo,et al. Behavioral factors impacting adoption and frequency of use of carsharing: A tale of two European cities , 2022, Transport Policy.
[10] Gisele de Lorena Diniz Chaves,et al. Freight Transport Decarbonization: A Systematic Literature Review of System Dynamics Models , 2022, Sustainability.
[11] M. Parsons,et al. Using Causal Loop Diagrams to Conceptualize Groundwater as a Social-Ecological System , 2022, Frontiers in Environmental Science.
[12] Jianjun Wu,et al. Optimization of personalized price discounting scheme for one-way station-based carsharing systems , 2022, Eur. J. Oper. Res..
[13] Pengpeng Jiao,et al. What Kind of Travellers Are Using Carsharing in Beijing? A Study Based on Selective Ensemble Learning , 2022, Sustainability.
[14] Matthias R. Brust,et al. Optimization of Carsharing Fleet Placement in Round-Trip Carsharing Service , 2021, Applied Sciences.
[15] N. Z. Abidin,et al. The Impact of Population and Deforestation on Climate Change in Malaysia: A Causal Loop Diagram , 2021, Environment and Ecology Research.
[16] P. Jittrapirom,et al. Aligning stakeholders’ mental models on carsharing system using remote focus group method , 2021, Transportation Research Part D: Transport and Environment.
[17] Sehoon Kim,et al. Exploring the impact of technological disruptions in the automotive retail: A futures studies and systems thinking approach based on causal layered analysis and causal loop diagram , 2021 .
[18] Barbara Kump,et al. Challenges of maintaining and diffusing grassroots innovations in alternative food networks: A systems thinking approach , 2021 .
[19] Zhaoxu Yu,et al. The construction of a high-active EVCARD online community based on user content adoption and generation model , 2021, Multimedia Tools and Applications.
[20] Paul Pfaffenbichler,et al. The potential impacts of automated cars on urban transport: An exploratory analysis , 2020, Transport Policy.
[21] Paul Pfaffenbichler,et al. A quantitative analysis of potential impacts of automated vehicles in Austria using a dynamic integrated land use and transport interaction model , 2020 .
[22] Maria Chiara Zanetti,et al. Conceptualizing environmental effects of carsharing services: A system thinking approach. , 2020, The Science of the total environment.
[23] Meisam Ranjbari,et al. Prioritizing Risk-level Factors in Comprehensive Automobile Insurance Management: A Hybrid Multi-criteria Decision-making Model , 2020, Global Business Review.
[24] Xin Liu,et al. Research on Traffic Congestion Based on System Dynamics: The Case of Chongqing, China , 2020, Complex..
[25] C. Vaz,et al. The influence of e-carsharing schemes on electric vehicle adoption and carbon emissions: An emerging economy study , 2020 .
[26] Florian Dandl,et al. Market development of autonomous driving in Germany , 2020 .
[27] Charles H. Fine,et al. Unintended Consequences of Automated Vehicles and Pooling for Urban Transportation Systems , 2020 .
[28] David R. Keith,et al. The Diffusion of Alternative Fuel Vehicles: A Generalised Model and Future Research Agenda , 2020, J. Simulation.
[29] L. Dai,et al. Assessment of the Development of Time-Sharing Electric Vehicles in Shanghai and Subsidy Implications: A System Dynamics Approach , 2020, Sustainability.
[30] Marco Diana,et al. A multimodal perspective in the study of car sharing switching intentions , 2019, Transportation Letters.
[31] Konstantinos Vogiatzis,et al. Connected & autonomous vehicles - Environmental impacts - A review. , 2019, The Science of the total environment.
[32] Haris N. Koutsopoulos,et al. Optimal design of promotion based demand management strategies in urban rail systems , 2019 .
[33] Enayat Allah Moallemi,et al. Modelling Transitions , 2019 .
[34] Susan Shaheen,et al. Shared mobility and urban form impacts: a case study of peer-to-peer (P2P) carsharing in the US , 2019, Journal of Urban Design.
[35] Patrick Jochem,et al. Simulating vehicle fleet composition: A review of system dynamics models , 2019, Renewable and Sustainable Energy Reviews.
[36] M. Alonso‐Almeida. Carsharing: another gender issue? Drivers of carsharing usage among women and relationship to perceived value , 2019 .
[37] P. Czech,et al. SAFETY AND SECURITY ASPECTS IN SHARED MOBILITY SYSTEMS , 2019, Scientific Journal of Silesian University of Technology. Series Transport.
[38] I. Cumming,et al. The impacts of office relocation on commuting mode shift behaviour in the context of Transportation Demand Management (TDM) , 2019, Case Studies on Transport Policy.
[39] S. Shaheen. Parking and the city , 2019, Transport Reviews.
[40] Pei Liu,et al. A system dynamics model for emissions projection of hinterland transportation , 2019, Journal of Cleaner Production.
[41] Jerome R. Mayaud,et al. Charging infrastructure for electric vehicles in Multi-Unit Residential Buildings: Mapping feedbacks and policy recommendations , 2019, Energy Policy.
[42] Richard Mounce,et al. On the potential for one-way electric vehicle car-sharing in future mobility systems , 2019, Transportation Research Part A: Policy and Practice.
[43] F. Boons,et al. Towards a sharing economy – Innovating ecologies of business models , 2018, Technological Forecasting and Social Change.
[44] B. Guirao,et al. The impact of free-floating carsharing on sustainable cities: analysis of first experiences in Madrid with the university campus , 2018, Sustainable Cities and Society.
[45] H. Timmermans,et al. Carsharing: the impact of system characteristics on its potential to replace private car trips and reduce car ownership , 2018, Transportation.
[46] Aiga Barisa,et al. A system dynamics model for CO2 emission mitigation policy design in road transport sector , 2018, Energy Procedia.
[47] Susan Shaheen,et al. Shared ride services in North America: definitions, impacts, and the future of pooling , 2018, Transport Reviews.
[48] Meisam Ranjbari,et al. Conceptualizing the Sharing Economy through Presenting a Comprehensive Framework , 2018, Sustainability.
[49] Meisam Ranjbari,et al. Sustainability and the Sharing Economy: Modelling the Interconnections , 2018, Dirección y Organización.
[50] Marco Diana,et al. Substitution and complementarity patterns between traditional transport means and car sharing: a person and trip level analysis , 2018, Transportation.
[51] S. Singh,et al. Measuring effectiveness of carbon tax on Indian road passenger transport: A system dynamics approach , 2018, Energy Economics.
[52] Hadi Dowlatabadi,et al. Vehicle ownership reduction: A comparison of one-way and two-way carsharing systems , 2018 .
[53] Rachana Vidhi,et al. A Review of Electric Vehicle Lifecycle Emissions and Policy Recommendations to Increase EV Penetration in India , 2018 .
[54] Guido Perboli,et al. Car-sharing services: An annotated review , 2018 .
[55] Abbas Alimohammadi,et al. A Hybrid Fuzzy Inference System Based on Dispersion Model for Quantitative Environmental Health Impact Assessment of Urban Transportation Planning , 2017 .
[56] Anjali Awasthi,et al. A system dynamics based simulation model to evaluate regulatory policies for sustainable transportation planning , 2017 .
[57] Hans Verboven,et al. The sustainability paradox of the sharing economy , 2016 .
[58] K. Axhausen,et al. Do sharing people behave differently? An empirical evaluation of the distinctive mobility patterns of free-floating car-sharing members , 2015 .
[59] Biswajit Mahanty,et al. Assessing the Effectiveness of Alternative Policies in Conjunction with Energy Efficiency Improvement Policy in India , 2015, Environmental Modeling & Assessment.
[60] D. N. Mavris,et al. A multi-paradigm approach to system dynamics modeling of intercity transportation , 2014 .
[61] Jafar Heydari,et al. A system dynamics modeling for urban air pollution: A case study of Tehran, Iran , 2014 .
[62] Sora Lee,et al. Combining technology roadmap and system dynamics simulation to support scenario-planning: A case of car-sharing service , 2014, Comput. Ind. Eng..
[63] Yang Chao,et al. System Dynamics Model of Shanghai Passenger Transportation Structure Evolution , 2013 .
[64] Susan Shaheen,et al. Carsharing and Personal Vehicle Services: Worldwide Market Developments and Emerging Trends , 2013 .
[65] Shuo-Yan Chou,et al. Air passenger demand forecasting and passenger terminal capacity expansion: A system dynamics framework , 2010, Expert Syst. Appl..
[66] Elliot Martin,et al. Carsharing Parking Policy , 2010 .
[67] Frank M. Bass,et al. A New Product Growth for Model Consumer Durables , 2004, Manag. Sci..
[68] Todd Litman,et al. THE ONLINE TDM ENCYCLOPEDIA: MOBILITY MANAGEMENT INFORMATION GATEWAY , 2003 .
[69] Rogelio Oliva,et al. Maps and models in system dynamics: a response to Coyle , 2001, System Dynamics Review.
[70] E F Wolstenholme,et al. Qualitative vs quantitative modelling: the evolving balance , 1999, J. Oper. Res. Soc..
[71] N. Shiwakoti,et al. Use-stage life cycle greenhouse gas emissions of the transition to an autonomous vehicle fleet: A System Dynamics approach , 2021 .
[72] Timothy E. Lipman,et al. Charging infrastructure demands of shared-use autonomous electric vehicles in urban areas , 2020 .
[73] Adam P. Cohen,et al. Carsharing's impact and future , 2019, The Sharing Economy and The Relevance for Transport.
[74] Meisam Ranjbari,et al. Sharing Economy Risks: Opportunities or Threats for Insurance Companies? A Case Study on the Iranian Insurance Industry , 2019, The Future of Risk Management, Volume II.
[75] Amir Ahmadi-Javid,et al. A simulation-optimization model for sustainable product design and efficient end-of-life management based on individual producer responsibility , 2019, Resources, Conservation and Recycling.
[76] Megan S. Ryerson,et al. Carsharing demand estimation and fleet simulation with EV adoption , 2019, Journal of Cleaner Production.
[77] Bart van Arem,et al. Towards a quantitative method to analyze the long-term innovation diffusion of automated vehicles technology using system dynamics , 2018 .
[78] Jittrapirom Peraphan,et al. Understanding decision makers’ perceptions of Chiang Mai city's transport problems an application of Causal Loop Diagram (CLD) methodology , 2017 .
[79] Stefan N. Groesser,et al. Mental models of dynamic systems: taking stock and looking ahead , 2012 .
[80] Jeroen Struben,et al. The Diffusion of Complex Market Technologies: Multifaceted Dynamics for Alternative Fuel Vehicles , 2008 .
[81] J. Sterman,et al. MIT Sloan School of Management , 2007 .
[82] Todd Litman,et al. Evaluating Carsharing Benefits , 2000 .
[83] Jianjun Wu,et al. Understanding the factors associated with one-way and round-trip carsharing usage based on a hybrid operation carsharing system: A case study in Beijing , 2022, Travel Behaviour and Society.