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THE FUTURE MOBILITY RESEARCH LAB

In future mobility lab we investigate the potential and impacts of innovations
and New Mobility forms on transportation systems and urban environment with an
explicit focus on large-scale complex systems, transport-environmental policies,
future/automated mobility solutions, and equity. For this purpose, we develop
and use state-of-the-art methodologies in behavioral models, simulation, data
collection, and analytical tools.

Meet the Team
Meet the Team



LATEST PUBLICATION


SUSTAINABLE AUTOMATED MOBILITY-ON-DEMAND STRATEGIES IN DENSE URBAN AREAS: A CASE
STUDY OF THE TEL AVIV METROPOLIS IN 2040


WE EXPLORE THE IMPLICATIONS OF AUTOMATED MOBILITY-ON-DEMAND (AMOD) SERVICES IN
DENSE, TRANSIT-ORIENTED CITIES THROUGH A COMPREHENSIVE SIMULATION IN THE
PROTOTYPE CITY OF TEL AVIV. OUR HIGH-FIDELITY STUDY REVEALS THAT WHILE AMOD
INITIALLY CONTRIBUTES TO INCREASED CONGESTION AND VEHICLE TRAVEL, INTEGRATION
WITH PUBLIC TRANSIT AND MEASURES TO REDUCE CAR OWNERSHIP EFFECTIVELY MITIGATE
THESE IMPACTS. THE ANALYSIS EMPHASIZES THE IMPORTANCE OF POLICIES TARGETING
DECREASED CAR OWNERSHIP FOR MORE EFFICIENT ENERGY CONSUMPTION AND REDUCED
GREENHOUSE GAS EMISSIONS IN URBAN MOBILITY. DISCOVER THE NUANCED EFFECTS OF
VARIOUS AMOD IMPLEMENTATION STRATEGIES ON TRIP PATTERNS AND ENVIRONMENTAL
SUSTAINABILITY.


BAYESIAN OPTIMIZATION APPROACH FOR CALIBRATING LARGE-SCALE ACTIVITY-BASED
TRANSPORT MODELS


THE COMPLEXITY OF ADDRESSING DISRUPTIVE TRENDS AND DISAGGREGATED MANAGEMENT
STRATEGIES IN TRANSPORTATION HAS LED TO THE INCREASED ADOPTION OF AGENT-BASED
AND ACTIVITY-BASED MODELING. HOWEVER, BROAD IMPLEMENTATION IS HINDERED BY THE
COMPUTATIONAL DEMANDS OF CALIBRATING INTRICATE BEHAVIORAL PARAMETERS IN
ACTIVITY-BASED MODELS. THIS PAPER INTRODUCES A NOVEL BAYESIAN OPTIMIZATION
APPROACH, UTILIZING AN IMPROVED RANDOM FOREST SURROGATE MODEL, TO AUTOMATE THE
CALIBRATION PROCESS AND OVERCOME THESE CHALLENGES. THE PROPOSED METHOD SETS A
BENCHMARK BY CALIBRATING THE LARGEST SET OF PARAMETERS YET, EMPLOYING A
SEQUENTIAL MODEL-BASED ALGORITHM CONFIGURATION THEORY. TESTED IN TALLINN,
ESTONIA, WITH 477 BEHAVIORAL PARAMETERS, THE CALIBRATION PROCESS YIELDS
SATISFACTORY RESULTS FOR MAJOR INDICATORS, INCLUDING AN OD MATRIX AVERAGE
MISMATCH OF 15.92 VEHICLES PER DAY AND A 4% ERROR IN THE OVERALL NUMBER OF
TRIPS.

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What's new?

Porter School of the Environment and Earth Sciences 

Faculty of Exact Sciences

Tel Aviv University

Tel Aviv 6997801, Israel

Tel (office): +972-3-640-6248 (Room 205)

Email: bathennb@tauex.tau.ac.il‏
Tel (lab): (Room 216)





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