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Michael F Hyland
Michael F Hyland
Assistant Professor, Civil and Environmental Engineering, University of California - Irvine
E-mail confirmado em uci.edu - Página inicial
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Dynamic autonomous vehicle fleet operations: Optimization-based strategies to assign AVs to immediate traveler demand requests
M Hyland, HS Mahmassani
Transportation Research Part C: Emerging Technologies 92, 278-297, 2018
3172018
Flexing service schedules: Assessing the potential for demand-adaptive hybrid transit via a stated preference approach
C Frei, M Hyland, HS Mahmassani
Transportation Research Part C: Emerging Technologies 76, 71-89, 2017
1492017
Joint design of multimodal transit networks and shared autonomous mobility fleets
HKRF Pinto, MF Hyland, HS Mahmassani, IÖ Verbas
Transportation Research Part C: Emerging Technologies 113, 2-20, 2020
1482020
Operational benefits and challenges of shared-ride automated mobility-on-demand services
M Hyland, HS Mahmassani
Transportation Research Part A: Policy and Practice 134, 251-270, 2020
1212020
Modeling determinants of ridesourcing usage: A census tract-level analysis of Chicago
A Ghaffar, S Mitra, M Hyland
Transportation Research Part C: Emerging Technologies 119, 102769, 2020
972020
Hybrid cluster-regression approach to model bikeshare station usage
M Hyland, Z Hong, HKR de Farias Pinto, Y Chen
Transportation Research Part A: Policy and Practice 115, 71-89, 2018
972018
Taxonomy of shared autonomous vehicle fleet management problems to inform future transportation mobility
MF Hyland, HS Mahmassani
Transportation Research Record 2653 (1), 26-34, 2017
922017
Evaluating the impact of spatio-temporal demand forecast aggregation on the operational performance of shared autonomous mobility fleets
F Dandl, M Hyland, K Bogenberger, HS Mahmassani
Transportation 46 (6), 1975-1996, 2019
762019
Dynamic modeling and real-time management of a system of EV fast-charging stations
D Yang, NJS Sarma, MF Hyland, R Jayakrishnan
Transportation Research Part C: Emerging Technologies 128, 103186, 2021
552021
Regulating mobility-on-demand services: Tri-level model and bayesian optimization solution approach
F Dandl, R Engelhardt, M Hyland, G Tilg, K Bogenberger, ...
Transportation Research Part C: Emerging Technologies 125, 103075, 2021
522021
Analytical models of rail transportation service in the grain supply chain: Deconstructing the operational and economic advantages of shuttle train service
MF Hyland, HS Mahmassani, LB Mjahed
Transportation Research Part E: Logistics and Transportation Review 93, 294-315, 2016
482016
Riders on the storm: Exploring weather and seasonality effects on commute mode choice in Chicago
M Hyland, C Frei, A Frei, HS Mahmassani
Travel behaviour and society 13, 44-60, 2018
452018
Gap-based transit assignment algorithm with vehicle capacity constraints: Simulation-based implementation and large-scale application
Ö Verbas, HS Mahmassani, MF Hyland
Transportation Research Part B: Methodological 93, 1-16, 2016
402016
Dynamic assignment-simulation methodology for multimodal urban transit networks
İÖ Verbas, HS Mahmassani, MF Hyland
Transportation Research Record 2498 (1), 64-74, 2015
282015
Driving California’s transportation emissions to zero
AL Brown, D Sperling, B Austin, JR DeShazo, L Fulton, T Lipman, ...
252021
Integrating demand forecasts into the operational strategies of shared automated vehicle mobility services: spatial resolution impacts
M Hyland, F Dandl, K Bogenberger, H Mahmassani
Transportation Letters 12 (10), 671-676, 2020
212020
Quantifying the employment accessibility benefits of shared automated vehicle mobility services: Consumer welfare approach using logsums
T Ahmed, M Hyland, NJS Sarma, S Mitra, A Ghaffar
Transportation Research Part A: Policy and Practice 141, 221-247, 2020
212020
Integrated mode choice and dynamic traveler assignment in multimodal transit networks: mathematical formulation, solution procedure, and large-scale application
İÖ Verbas, HS Mahmassani, MF Hyland, H Halat
Transportation Research Record 2564 (1), 78-88, 2016
182016
Characterization of taxi fleet operational networks and vehicle efficiency: Chicago case study
Y Chen, M Hyland, MP Wilbur, HS Mahmassani
Transportation Research Record 2672 (48), 127-138, 2018
172018
A generalized diffusion model for preference and response time: Application to ordering mobility-on-demand services
J Yu, MF Hyland
Transportation Research Part C: Emerging Technologies 121, 102854, 2020
162020
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