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Engineering and Technology

D-Index
48
Citations
12157
World Ranking
4478
National Ranking
68

Overview

Nikolas Geroliminis is affiliated with the École Polytechnique Fédérale de Lausanne in Switzerland. Their research primarily focuses on engineering and social sciences, with a significant emphasis on transportation and related fields.

The scientist has contributed extensively to the study of transportation planning and optimization, transportation and mobility innovations, traffic control and management, and traffic prediction and management techniques. Additional research topics include electric vehicles and infrastructure, sharing economy and platforms, as well as autonomous vehicle technology and safety.

The main fields of study for this researcher include:

  • Engineering
  • Social Sciences

Their work spans several subfields such as:

  • Transportation
  • Automotive Engineering
  • Control and Systems Engineering
  • Building and Construction
  • Electrical and Electronic Engineering

Geroliminis has authored numerous papers published in a variety of venues. Frequent publication venues include:

  • arXiv (Cornell University)
  • Transportation Research Part C Emerging Technologies
  • Transportation Research Part B Methodological
  • IEEE Transactions on Intelligent Transportation Systems
  • Transportation Research Part E Logistics and Transportation Review

Selected recent publications include:

  • Data driven model free adaptive iterative learning perimeter control for large-scale urban road networks, 2020, Transportation Research Part C Emerging Technologies
  • Stabilization of city-scale road traffic networks via macroscopic fundamental diagram-based model predictive perimeter control, 2021, Control Engineering Practice
  • Modeling, estimation, and control in large-scale urban road networks with remaining travel distance dynamics, 2021, Transportation Research Part C Emerging Technologies
  • Empirical analysis of large-scale multimodal traffic with multi-sensor data, 2020, Transportation Research Part C Emerging Technologies
  • Two-layer adaptive signal control framework for large-scale dynamically-congested networks: Combining efficient Max Pressure with Perimeter Control, 2023, Transportation Research Part C Emerging Technologies

The researcher often collaborates with other scholars, with frequent co-authors including Emmanouil Barmpounakis, Gustav Nilsson, Marko Maljkovic, Dimitrios Tsitsokas, and Anastasios Kouvelas.

Best Publications

  • Existence of urban-scale macroscopic fundamental diagrams: Some experimental findings

    Nikolas Geroliminis;Carlos F. Daganzo

  • An analytical approximation for the macroscopic fundamental diagram of urban traffic

    Carlos F Daganzo;Nikolas Geroliminis

  • Optimal Perimeter Control for Two Urban Regions With Macroscopic Fundamental Diagrams: A Model Predictive Approach

    N. Geroliminis;J. Haddad;M. Ramezani

  • An optimization framework for the development of efficient one-way car-sharing systems

    Burak Boyacı;Burak Boyacı;Konstantinos G. Zografos;Nikolas Geroliminis

  • Dynamics of heterogeneity in urban networks: aggregated traffic modeling and hierarchical control

    Mohsen Ramezani;Jack Haddad;Nikolas Geroliminis

  • The spatial variability of vehicle densities as determinant of urban network capacity

    Amin Mazloumian;Nikolaos Geroliminis;Dirk Helbing

  • On the new era of urban traffic monitoring with massive drone data: The pNEUMA large-scale field experiment

    Emmanouil Barmpounakis;Nikolas Geroliminis

  • Macroscopic Modeling of Traffic in Cities

    Nikolas Geroliminis;Carlos F Daganzo

  • Cooperative traffic control of a mixed network with two urban regions and a freeway

    Jack Haddad;Mohsen Ramezani;Nikolas Geroliminis

  • A dynamic cordon pricing scheme combining the Macroscopic Fundamental Diagram and an agent-based traffic model

    Nan Zheng;Rashid A. Waraich;Kay W. Axhausen;Nikolas Geroliminis

  • Real-time monitoring and control on signalized arterials

    Alexander Skabardonis;Nikolas Geroliminis

  • On the estimation of arterial route travel time distribution with Markov chains

    Mohsen Ramezani;Nikolas Geroliminis

  • An integrated optimization-simulation framework for vehicle and personnel relocations of electric carsharing systems with reservations

    Burak Boyacı;Konstantinos G. Zografos;Nikolas Geroliminis

  • A three-dimensional macroscopic fundamental diagram for mixed bi-modal urban networks

    Nikolas Geroliminis;Nan Zheng;Konstantinos Ampountolas;Konstantinos Ampountolas

  • Equilibrium analysis and route guidance in large-scale networks with MFD dynamics

    Mehmet Yildirimoglu;Mohsen Ramezani;Nikolas Geroliminis

  • Economic Model Predictive Control of Large-Scale Urban Road Networks via Perimeter Control and Regional Route Guidance

    Isik Ilber Sirmatel;Nikolas Geroliminis

  • Queue Profile Estimation in Congested Urban Networks with Probe Data

    Unknown

  • Real-Time Estimation of Travel Times on Signalized Arterials

    Alexander Skabardonis;Nikolas Geroliminis

  • Multiple Concentric Gating Traffic Control in Large-Scale Urban Networks

    Mehdi Keyvan-Ekbatani;Mehmet Yildirimoglu;Nikolas Geroliminis;Markos Papageorgiou

  • An empirical analysis on the arterial fundamental diagram

    Xinkai Wu;Henry X. Liu;Nikolas Geroliminis

  • Estimation of Arterial Route Travel Time Distribution with Markov Chains

    Mohsen Ramezani;Nikolas Geroliminis

Frequent Co-Authors

Carlos F. Daganzo
Carlos F. Daganzo University of California, Berkeley
Alexander Skabardonis
Alexander Skabardonis University of California, Berkeley
Ludovic Leclercq
Ludovic Leclercq Université Gustave Eiffel
Matthew G. Karlaftis
Matthew G. Karlaftis National Technical University of Athens
Eleni I. Vlahogianni
Eleni I. Vlahogianni National Technical University of Athens
David M Levinson
David M Levinson University of Sydney
Michael J. Cassidy
Michael J. Cassidy University of California, Berkeley
Pascal Frossard
Pascal Frossard École Polytechnique Fédérale de Lausanne
Henry X. Liu
Henry X. Liu University of Michigan–Ann Arbor

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