Barriers and risks of Mobility-as-a-Service (MaaS) adoption in cities: A systematic review of the literature
Tài liệu tham khảo
Alexandros, 2017, How can autonomous and connected vehicles, electromobility, BRT, hyperloop, shared use mobility and Mobility-as-a-Service shape transport futures for the context of smart cities?, Urban Science, 1, 36, 10.3390/urbansci1040036
Alonso-González, 2020, Drivers and barriers in adopting Mobility-as-a-Service, Transportation Research Part A, 132, 378
Arias-Molinares, 2020, The Ws of MaaS, IATSS Research, 10.1016/j.iatssr.2020.02.001
Audouin, 2018, The development of mobility-as-a-service in the Helsinki metropolitan area, Research in Transportation Business and Management, 27, 24, 10.1016/j.rtbm.2018.09.001
Becker, 2020, Assessing the welfare impacts of shared mobility and Mobility-as-a-Service, Transportation Research Part A, 131, 228
Beheshtian, 2020, Bringing the efficiency of electricity market mechanisms to multimodal mobility across congested transportation systems, Transportation Research Part A, 131, 58
Caiati, 2020, Bundling, pricing schemes and extra features preferences for mobility-as-a-service, Transportation Research Part A, 131, 123
Calderón, 2019, A literature review of mobility services, Transport Reviews
Callegati, 2018, Cloud-of-things meets Mobility-as-a-Service, Computers & Security, 74, 277, 10.1016/j.cose.2017.10.006
Casadó, 2020, Children, young people and Mobility as a Service, Transportation Research Interdisciplinary Perspectives, 10.1016/j.trip.2020.100107
Casey, 2017, Evolution toward an open value system for smart mobility services, Competition and Regulation in Network Industries, 18, 44, 10.1177/1783591717734808
Chang, 2020, Mobility-as-a-Service policy planning, deployments and trials in Taiwan, IATSS Research., 3, 312
Contreras, 2018, The effects of ride-hailing companies on the taxicab industry in Las Vegas, Nevada, Transportation Research Part A, 115, 63
Cooper, 2019, Electric vehicle mobility-as-a-service, Journal of Urban Technology, 26, 35, 10.1080/10630732.2018.1553096
Cottrill, 2020, MaaS surveillance, Transportation Research Part A, 131, 50
Curtis, 2019, Governance of future urban mobility, Urban Policy and Research, 37, 393, 10.1080/08111146.2019.1626711
Docherty, 2018, The governance of smart mobility, Transportation Research Part A, 115, 114
Eckhardt, 2018, MaaS in rural areas, Research in Transportation Business and Management, 27, 75, 10.1016/j.rtbm.2018.09.005
Esztergár-Kiss, 2019, Creation of mobility packages based on the MaaS concept, Travel Behaviour and Society
Faisal, 2019, Understanding autonomous vehicles, Journal of Transport and Land Use, 12, 45, 10.5198/jtlu.2019.1405
Faisal, 2020, Mapping two decades of autonomous vehicle research, Journal of Urban Technology, 10.1080/10630732.2020.1780868
Feneri, 2020, Modeling the effect of Mobility-as-a-Service on mode choice decisions, Transportation Letters, 10.1080/19427867.2020.1730025
Fioreze, 2019, On the likelihood of using mobility-as-a-service, Case Studies on Transport Policy., 7, 790, 10.1016/j.cstp.2019.08.002
Franco, 2020, Demand responsive transport, Transportation Research Part A, 131, 244
Fuentes, 2019, The “iPhone effect”, Competition and Regulation in Network Industries
García, 2020, State of the art of Mobility as a Service (MaaS) ecosystems and architectures, World Electric Vehicle Journal, 11, 1
Golbabaei, 2020, Shared autonomous vehicles in the context of smart urban mobility, International Journal of Sustainable Transportation, 10.1080/15568318.2020.1798571
Golbabaei, 2020, Individual predictors of autonomous vehicle public acceptance and intention to use, Journal of Open Innovation, 6, 106, 10.3390/joitmc6040106
Goodall, 2017, The rise of Mobility-as-a-Service, Deloitte Review, 20, 111
Guidon, 2020, Transportation service bundling, Transportation Research Part A, 131, 91
Harrison, 2020, The business case for a journey planning and ticketing app, Sustainability, 12, 4005, 10.3390/su12104005
Hawkins, 2019, Heterogeneity in marginal value of urban mobility, Transportation
He, 2020, Optimal privacy control for transport network data sharing, Transportation Research Part C, 113, 370, 10.1016/j.trc.2019.07.010
Hensher, 2017, Future bus transport contracts under a Mobility-as-a-Service regime in the digital age, Transportation Research Part A, 98, 86
Hirschhorn, 2019, Public transport regimes and Mobility-as-a-Service, Transportation Research Part A, 130, 178
Ho, 2018, Potential uptake and willingness-to-pay for Mobility-as-a-Service, Transportation Research Part A, 117, 302
Ho, 2020, Public preferences for Mobility-as-a-Service, Transportation Research Part A, 131, 70
Hoerler, 2019, New solutions in sustainable commuting, Social Sciences, 8, 220, 10.3390/socsci8070220
Hoerler, 2020, What are the factors and needs promoting mobility-as-a-service?, European Transport Research Review, 12, 1, 10.1186/s12544-020-00412-y
Hörcher, 2020, MaaS economics, Economics of Transportation, 22, 100167, 10.1016/j.ecotra.2020.100167
Jang, 2020, Does MaaS contribute to sustainable transportation?, International Journal of Sustainable Transportation
Jittrapirom, 2017, Mobility-as-a-service, Urban Planning, 2, 13, 10.17645/up.v2i2.931
Jittrapirom, 2018, Dynamic adaptive policymaking for implementing mobility-as-a service, Research in Transportation Business and Management, 27, 46, 10.1016/j.rtbm.2018.07.001
Jittrapirom, 2018, Future implementation of Mobility-as-a-Service, Travel Behaviour and Society
Johansson, 2019, Moving to private-car-restricted and mobility-served neighborhoods, Sustainability, 11, 6208, 10.3390/su11226208
Jokinen, 2019, Policy lessons from the flexible transport service pilot Kutsuplus in the Helsinki Capital Region, Transport Policy, 76, 123, 10.1016/j.tranpol.2017.12.004
Kamargianni, 2016, A critical review of new mobility services for urban transport, Transportation Research Procedia, 14, 3294, 10.1016/j.trpro.2016.05.277
Kankanamge, 2019, Can volunteer crowdsourcing reduce disaster risk?, International Journal of Disaster Risk Reduction, 35, 101097, 10.1016/j.ijdrr.2019.101097
Karlsson, 2020, Development and implementation of Mobility-as-a-Service, Transportation Research Part A, 131, 283
Keller, 2018, Car sharers’ interest in integrated multimodal mobility platforms, Sustainability, 10, 4689, 10.3390/su10124689
Liljamo, 2020, People’s current mobility costs and willingness to pay for Mobility as a Service offerings, Transportation Research Part A, 136, 99
Liu, 2020, Exploring the feasibility of Mobility as a Service in small urban and rural communities, Journal of Urban Planning and Development, 146, 10.1061/(ASCE)UP.1943-5444.0000600
Liyanage, 2019, Flexible mobility on-demand, Sustainability, 11, 1262, 10.3390/su11051262
Lyons, 2019, The importance of user perspective in the evolution of MaaS, Transportation Research Part A, 121, 22
Masini, 2020, The use of meta-surfaces in vehicular networks, Journal of Sensor and Actuator Networks, 9, 15, 10.3390/jsan9010015
Matyas, 2020, Opportunities and barriers to multimodal cities, European Transport Research Review, 12, 7, 10.1186/s12544-020-0395-z
Matyas, 2018, The potential of Mobility-as-a-Service bundles as a mobility management tool, Transportation, 46, 1951, 10.1007/s11116-018-9913-4
Merkert, 2020, Collaboration as a service (CaaS) to fully integrate public transportation, Transportation Research Part A, 131, 267
Meurs, 2020, Organizing integrated services in Mobility-as-a-Service systems, Transportation Research Part A, 131, 178
Mukhtar-Landgren, 2019, Perceived action spaces for public actors in the development of Mobility-as-a-Service, European Transport Research Review, 11, 1, 10.1186/s12544-019-0363-7
Mulley, 2017, Mobility-as-a-service, Transport Reviews, 37, 247, 10.1080/01441647.2017.1280932
Mulley, 2020, Mobility-as-a-Service in community transport in Australia, Transportation Research Part A, 131, 107
Mulley, 2018, The “uberisation” of public transport and mobility-as-a-service (MaaS), Research in Transportation Economics, 69, 568, 10.1016/j.retrec.2018.08.007
Mulley, 2018, Community transport meets mobility-as-a-service, Research in Transportation Economics, 69, 583, 10.1016/j.retrec.2018.02.004
Narupiti, 2019, Exploring the possibility of MaaS service in Thailand, IATSS Research, 43, 226, 10.1016/j.iatssr.2019.11.003
Newman, 1996, The land use-transport connection, Land Use Policy, 13, 1, 10.1016/0264-8377(95)00027-5
Nikitas, 2020, Artificial intelligence, transport and the smart city, Sustainability, 12, 2789, 10.3390/su12072789
Osterholm
Pandey, 2019, On the needs for MaaS platforms to handle competition in ridesharing mobility, Transportation Research Part C, 108, 269, 10.1016/j.trc.2019.09.021
Pangbourne, 2020, Persuasion profiles to promote pedestrianism, Travel, Behaviour & Society, 20, 300, 10.1016/j.tbs.2020.04.004
Pangbourne, 2020, Questioning mobility-as-a-service, Transportation Research Part A, 131, 35
Paz, 2009, Information-based traffic control strategies consistent with estimated driver behavior, Transportation Research Part B, 43, 73, 10.1016/j.trb.2008.06.007
Pickford, 2019, The shape of MaaS, IATSS Research, 43, 219, 10.1016/j.iatssr.2019.11.006
Polydoropoulou, 2018, Ready for Mobility-as-a-Service?, Travel Behaviour and Society
Polydoropoulou, 2020, Prototype business models for Mobility-as-a-Service, Transportation Research Part A.
Redman, 2013, Quality attributes of public transport that attract car users, Transport Policy, 25, 119, 10.1016/j.tranpol.2012.11.005
Rosenblum, 2020, Parking futures, Land Use Policy, 91, 104054, 10.1016/j.landusepol.2019.104054
Sakai, 2019, MaaS trends and policy-level initiatives in the EU, IATSS Research, 43, 207, 10.1016/j.iatssr.2019.11.001
Sakai, 2020, Public transport promotion and Mobility-as-a-Service, IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences, E103A, 226, 10.1587/transfun.2019TSI0001
Schikofsky, 2020, Exploring motivational mechanisms behind the intention to adopt Mobility-as-a-Service (MaaS), Transportation Research Part A, 131, 296
Segui-Gasco, 2019, Simulating a rich ride-share mobility service using agent-based models, Transportation, 46, 2041, 10.1007/s11116-019-10012-y
Singh, 2020, India’s shift from mass transit to MaaS transit, Transportation Research Part A, 131, 219
Sjöman, 2020, Exploring everyday mobility in a living lab based on economic interventions, European Transport Research Review, 12, 5, 10.1186/s12544-019-0392-2
Smith, 2020, Towards a framework for Mobility-as-a-Service policies, Transport Policy, 89, 54, 10.1016/j.tranpol.2020.02.004
Smith, 2019, Public–private innovation, Public Management Review, 21, 116, 10.1080/14719037.2018.1462399
Smith, 2020, Intermediary MaaS integrators, Transportation Research Part A, 131, 163
Smith, 2018, Mobility-as-a-Service, Research in Transportation Business and Management, 27, 36, 10.1016/j.rtbm.2018.09.004
Soares Machado, 2018, An overview of shared mobility, Sustainability, 10, 4342, 10.3390/su10124342
Sochor, 2018, A topological approach to Mobility-as-a-Service, Research in Transportation Business and Management, 27, 3, 10.1016/j.rtbm.2018.12.003
Sochor, 2016, Trying out Mobility-as-a-Service experiences from a field trial and implications for understanding demand, Transportation Research Record, 2542, 57, 10.3141/2542-07
Sochor, 2015, Implementing Mobility-as-a-Service challenges in integrating user, commercial, and societal perspectives, Transportation Research Record, 2536, 1, 10.3141/2536-01
Sourbati, 2020, Smart mobility, age and data justice, New Media and Society, 10.1177/1461444820902682
Stanley, 2014, Delivering sustainable public transport, Research in Transportation Economics, 48, 315, 10.1016/j.retrec.2014.09.058
Stehlin, 2020, Platform mobilities and the production of urban space, Environment and Planning A, 10.1177/0308518X19896801
Storme, 2020, Limitations to the car-substitution effect of MaaS, Transportation Research Part A, 131, 196
Strömberg, 2018, Inviting travelers to the smorgasbord of sustainable urban transport, Transportation, 45, 1655, 10.1007/s11116-018-9946-8
Strömberg, 2016, Trying on change, Travel Behaviour and Society, 4, 60, 10.1016/j.tbs.2016.01.002
Surakka, 2018, Regulation and governance supporting systemic MaaS innovations, Research in Transportation Business and Management, 27, 56, 10.1016/j.rtbm.2018.12.001
Tirachini, 2019, Ride-hailing, travel behaviour and sustainable mobility, Transportation
Tirachini, A. (2020). Coronavirus: what if we stop repeating that public transport is risky? Accessed on 26 October 2020 from https://medium.com/@alejandro.tirachini/coronavirus-what-if-we-stop-repeating-that-public-transport-is-risky-5ae30ef26414.
Utriainen, 2018, Review on Mobility-as-a-Service in scientific publications, Research in Transportation Business and Management, 27, 15, 10.1016/j.rtbm.2018.10.005
Veeneman, 2018, PETRA: governance as a key success factor for big data solutions in mobility, Research in Transportation Economics, 69, 420, 10.1016/j.retrec.2018.07.003
Vij, 2020, Consumer preferences for Mobility-as-a-Service (MaaS) in Australia, Transportation Research Part C, 117, 102699, 10.1016/j.trc.2020.102699
Webb, 2019, The future of transport, Economic Analysis and Policy, 61, 1, 10.1016/j.eap.2019.01.002
Wong
Wong, 2020, Mobility-as-a-Service (MaaS), Transportation Research Part A, 131, 5
Wright, 2020, MaaS for the suburban market, Transportation Research Part A, 131, 206
Ye, 2020, A study on users’ willingness to accept mobility as a service based on UTAUT model, Technological Forecasting and Social Change, 157, 120066, 10.1016/j.techfore.2020.120066
Yigitcanlar, 2016
Yigitcanlar, 2020, Contributions and risks of artificial intelligence (AI) in building smarter cities, Energies, 13, 1473, 10.3390/en13061473
Yigitcanlar, 2007, Travel self-containment in master planned estates, Urban Policy and Research, 25, 129, 10.1080/08111140701255823
Yigitcanlar, 2019, The making of smart cities, Land Use Policy, 88, 104187, 10.1016/j.landusepol.2019.104187
Yigitcanlar, 2018, Does smart city policy lead to sustainability of cities?, Land Use Policy, 73, 49, 10.1016/j.landusepol.2018.01.034
Yigitcanlar, 2019, Smart cities and mobility, Journal of Urban Technology, 26, 21, 10.1080/10630732.2018.1476794
Yigitcanlar, 2019, Can cities become smart without being sustainable?, Sustainable Cities and Society, 45, 348, 10.1016/j.scs.2018.11.033
Yigitcanlar, 2019, Disruptive impacts of automated driving systems on the built environment and land use, Journal of Open Innovation, 5, 24, 10.3390/joitmc5020024
Zhao, 2014, Private motorised urban mobility in China’s large cities, Journal of Transport Geography, 40, 53, 10.1016/j.jtrangeo.2014.07.011