Transportation Engineering
Active travel behavior (walking and bicycling), Safety evaluations, Traffic conflicts techniques, Pedestrian modeling, ITS, Risk Analysis, Machine Learning, Game Theory, Sequential Decision-Making, and Stochastic Modeling.
Active travel behaviour (walking and bicycling), micromobility and emerging human-electric hybrid vehicles (such as e-bikes), motor vehicle emissions and air quality, and bicycle facility design
Complete streets design to create behavior change to more sustainable modes.
Using new technologies to deal with sustainability, mobility and general transportation challenges at UBC.
Traffic safety analysis, crash estimation, traffic conflict techniques, advanced statistical modeling
Transportation systems analysis, multimodal networks, transportation infrastructure planning, adaptation, long-distance transportation, air transportation, resource allocation and optimization, multicriteria analysis, supply-and-demand models
Full Bayes safety models, Automated safety analysis using computer vision techniques, Safety evaluations, Traffic conflicts techniques, Pedestrian modeling, and ITS.
Asset Management, Life Cycle Modeling, Optimization Methods, Real Options, Reinforcement Learning, Risk Analysis, Sequential Decision-Making, Stochastic Modeling, Sustainable Infrastructure Management, Time-Series Methods, Uncertainty Estimation and Propagation.