Effect of autonomous vehicles on travel and urban characteristics
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Qiong Tian | Ghim Ping Ong | Peng Liu | Shu-Xian Xu | Shoufeng Ma | Shoufeng Ma | Q. Tian | Shu-Xian Xu | G. Ong | P. Liu | Peng Liu
[1] Haijun Huang,et al. Optimizing the number of employment subcenters to decentralize a congested city , 2021 .
[2] Peng Liu,et al. Morning commuting pattern and crowding pricing in a many-to-one public transit system with heterogeneous users , 2021 .
[3] Ronghui Liu,et al. Temporal-spatial allocation of bottleneck capacity for managing morning commute with carpool , 2021 .
[4] Ning Jia,et al. The effects of transportation system improvements on urban performances with heterogeneous residents , 2020 .
[5] Liping Zhang,et al. The two-mode problem with bottleneck queuing and transit crowding: How should congestion be priced using tolls and fares? , 2020 .
[6] M. Burris,et al. Will autonomous vehicles change auto commuters’ value of travel time? , 2020 .
[7] W. Larson,et al. Self-driving cars and the city: Effects on sprawl, energy consumption, and housing affordability , 2020 .
[8] Qiong Tian,et al. Flow pattern and optimal capacity in a bi-modal traffic corridor with heterogeneous users , 2020 .
[9] S. Wong,et al. Design of build-operate-transfer contract for integrated rail and property development with uncertainty in future urban population , 2019 .
[10] S. Travis Waller,et al. Modelling and managing the integrated morning-evening commuting and parking patterns under the fully autonomous vehicle environment , 2019, Transportation Research Part B: Methodological.
[11] Jian Wang,et al. Multiclass traffic assignment model for mixed traffic flow of human-driven vehicles and connected and autonomous vehicles , 2019, Transportation Research Part B: Methodological.
[12] Hai-Jun Huang,et al. The morning commute problem with endogenous shared autonomous vehicle penetration and parking space constraint , 2019, Transportation Research Part B: Methodological.
[13] Kara M. Kockelman,et al. Congestion Pricing in a World of Self-driving vehicles: an Analysis of Different Strategies in Alternative Future Scenarios , 2018, Transportation Research Part C: Emerging Technologies.
[14] Jinhua Zhao,et al. Transit-oriented autonomous vehicle operation with integrated demand-supply interaction , 2018, Transportation Research Part C: Emerging Technologies.
[15] Hai-Jun Huang,et al. Pareto-improving policies for an idealized two-zone city served by two congestible modes , 2018, Transportation Research Part B: Methodological.
[16] Haijun Huang,et al. Mode choice and railway subsidy in a congested monocentric city with endogenous population distribution , 2018, Transportation Research Part A: Policy and Practice.
[17] Wei Liu,et al. An equilibrium analysis of commuter parking in the era of autonomous vehicles , 2018, Transportation Research Part C: Emerging Technologies.
[18] Barbara Lenz,et al. How Autonomous Driving May Affect the Value of Travel Time Savings for Commuting , 2018 .
[19] Yang Liu,et al. Dynamic user Equilibrium Departure Time and Mode Choice in a Bi-modal Corridor with Risk-averse Travelers , 2018 .
[20] Amir Ghiasi,et al. A mixed traffic capacity analysis and lane management model for connected automated vehicles: A Markov chain method , 2017 .
[21] Mogens Fosgerau,et al. Vickrey meets Alonso: Commute scheduling and congestion in a monocentric city , 2018 .
[22] Soyoung Ahn,et al. Towards vehicle automation: Roadway capacity formulation for traffic mixed with regular and automated vehicles , 2017 .
[23] N. Geroliminis,et al. On the use of reservation-based autonomous vehicles for demand management , 2017 .
[24] Ricardo A. Daziano,et al. Are Consumers Willing to Pay to Let Cars Drive for Them? Analyzing Response to Autonomous Vehicles , 2017 .
[25] Alireza Talebpour,et al. Influence of connected and autonomous vehicles on traffic flow stability and throughput , 2016 .
[26] W. Lam,et al. Tradable location tax credit scheme for balancing traffic congestion and environmental externalities , 2016 .
[27] Erik T. Verhoef,et al. Robot Cars and Dynamic Bottleneck Congestion: The Effects on Capacity, Value of Time and Preference Heterogeneity , 2016 .
[28] M. Koning,et al. Crowding in Public Transport: Who Cares and Why? , 2015 .
[29] R. Zakharenko. Self-Driving Cars Will Change Cities , 2015 .
[30] Jonathan D. Hall. Pareto Improvements from Lexus Lanes: The effects of pricing a portion of the lanes on congested highways , 2015 .
[31] Daniel J. Fagnant,et al. Preparing a Nation for Autonomous Vehicles: Opportunities, Barriers and Policy Recommendations , 2015 .
[32] Erik T. Verhoef,et al. Dynamic bottleneck congestion and residential land use in the monocentric city , 2014 .
[33] Kara M. Kockelman,et al. The Travel and Environmental Implications of Shared Autonomous Vehicles, Using Agent-Based Model Scenarios , 2014 .
[34] Hai-Jun Huang,et al. Equilibrium and Modal Split in a Competitive Highway/Transit System Under Different Road-use Pricing Strategies , 2014 .
[35] Keechoo Choi,et al. Modeling the effects of integrated rail and property development on the design of rail line services in a linear monocentric city , 2012 .
[36] Urbano Nunes,et al. Platooning With IVC-Enabled Autonomous Vehicles: Strategies to Mitigate Communication Delays, Improve Safety and Traffic Flow , 2012, IEEE Transactions on Intelligent Transportation Systems.
[37] Mogens Fosgerau,et al. How a fast lane may replace a congestion toll , 2011 .
[38] Hai-Jun Huang,et al. How Do Transit Commuters Make Trade-Offs between Schedule Delay Penalty and Congestion Cost? , 2009 .
[39] A. Barbagallo. Existence of continuous solutions to evolutionary quasi-variational inequalities with applications , 2007 .
[40] Ziyou Gao,et al. Modal Split and Commuting Pattern on a Bottleneck-Constrained Highway , 2007 .
[41] William H. K. Lam,et al. A study of crowding effects at the Hong Kong light rail transit stations , 1999 .
[42] Richard Arnott,et al. CONGESTION TOLLING AND URBAN SPATIAL STRUCTURE , 1998 .
[43] Tang-Hsien Chang,et al. Analysis of characteristics of mixed traffic flow of autopilot vehicles and manual vehicles , 1997 .
[44] Masahisa Fujita. Urban Economic Theory , 1989 .
[45] A. Palma,et al. Economics of a bottleneck , 1986 .
[46] Kenneth A. Small,et al. THE SCHEDULING OF CONSUMER ACTIVITIES: WORK TRIPS , 1982 .
[47] Harry W. Richardson,et al. On the possibility of positive rent gradients , 1977 .
[48] D. Capozza. Subways and Land Use , 1973 .
[49] D. Capoza. SUBWAYS AND LAND USE , 1973 .
[50] W. Vickrey. Congestion Theory and Transport Investment , 1969 .
[51] William Alonso,et al. Location and Land Use: Toward a General Theory of Land Rent , 1966 .