Notice détaillée
Titre
Tsitsokas, Dimitrios
Sciper ID
286074
Laboratoires affiliés
LUTS
Publications
An optimization framework for exclusive bus lane allocation in large networks with dynamic congestion
Combinatorial optimization of Dedicated Bus Lane layout in urban networks with dynamic congestion
Critical node selection method for efficient Max-Pressure traffic signal control in large-scale congested networks
Efficient Max-Pressure Traffic Management for Large-Scale Congested Urban Networks
Modeling and Optimization of Dedicated Bus Lane network design under dynamic traffic congestion
Modeling and optimization of dedicated bus lanes space allocation in large networks with dynamic congestion
Modeling, estimation, and control in large-scale urban road networks with remaining travel distance dynamics
Two-layer adaptive signal control framework for large-scale dynamically-congested networks: Combining efficient Max Pressure with Perimeter Contr[...]
Two-layer adaptive signal control framework for large-scale networks
Two-layer adaptive signal control framework for large-scale networks combining efficient Max-Pressure and Perimeter Control
Combinatorial optimization of Dedicated Bus Lane layout in urban networks with dynamic congestion
Critical node selection method for efficient Max-Pressure traffic signal control in large-scale congested networks
Efficient Max-Pressure Traffic Management for Large-Scale Congested Urban Networks
Modeling and Optimization of Dedicated Bus Lane network design under dynamic traffic congestion
Modeling and optimization of dedicated bus lanes space allocation in large networks with dynamic congestion
Modeling, estimation, and control in large-scale urban road networks with remaining travel distance dynamics
Two-layer adaptive signal control framework for large-scale dynamically-congested networks: Combining efficient Max Pressure with Perimeter Contr[...]
Two-layer adaptive signal control framework for large-scale networks
Two-layer adaptive signal control framework for large-scale networks combining efficient Max-Pressure and Perimeter Control
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