In this paper, we consider a simple road intersection with traffic light control and suggest a queueing model for the traffic flow in the intersection. The suggested model implements the well-known queue with state-dependent departure rates. Using this model, we define optimal state-dependent scheduling of the traffic lights in the intersection and consider its properties. Activity of the model is illustrated by numerical simulations. It is demonstrated that in practical conditions the suggested scheduling of the traffic lights allows the prevention of traffic jams in the intersection and resolves vehicles queues with reasonable waiting times in the crossing lanes
The dynamic adaptive control of traffic lights can be formulated as a Markov decision problem (MDP)....
The main purpose of this project is to build a mathematical model for traffic at a busy intersection...
In this paper we address the following traffic regulation problem given a junction with some incomin...
Abstract: We propose a novel dynamical model of a simple traffic intersection, where the state varia...
AbstractThe paper describes the methods of queuing theory to solve the problem of optimizing traffic...
Traffic models play an important role in both today's traffic research and in many traffic applicati...
Abstract: We propose a novel dynamical model of a simple traffic intersection, where the state varia...
We propose a novel dynamical model of a simple traffic intersection, where the state variables repre...
Traffic models play an important role in both today's traffic research and in many traffic applicati...
With increasing congestion in urban areas, it is important to characterise existing traffic control ...
Traffic signal lights system is a signalling device located at an intersection or pedestrian crossin...
We consider an optimal traffic-light control framework for urban traffic intersections to alleviate ...
Traffic lights are put in place to dynamically change priority between traffic participants. Commonl...
The extensive use of information technology in the field of traffic control will increase the traffi...
By widely introducing information technology tools in the field of traffic control, it is possible t...
The dynamic adaptive control of traffic lights can be formulated as a Markov decision problem (MDP)....
The main purpose of this project is to build a mathematical model for traffic at a busy intersection...
In this paper we address the following traffic regulation problem given a junction with some incomin...
Abstract: We propose a novel dynamical model of a simple traffic intersection, where the state varia...
AbstractThe paper describes the methods of queuing theory to solve the problem of optimizing traffic...
Traffic models play an important role in both today's traffic research and in many traffic applicati...
Abstract: We propose a novel dynamical model of a simple traffic intersection, where the state varia...
We propose a novel dynamical model of a simple traffic intersection, where the state variables repre...
Traffic models play an important role in both today's traffic research and in many traffic applicati...
With increasing congestion in urban areas, it is important to characterise existing traffic control ...
Traffic signal lights system is a signalling device located at an intersection or pedestrian crossin...
We consider an optimal traffic-light control framework for urban traffic intersections to alleviate ...
Traffic lights are put in place to dynamically change priority between traffic participants. Commonl...
The extensive use of information technology in the field of traffic control will increase the traffi...
By widely introducing information technology tools in the field of traffic control, it is possible t...
The dynamic adaptive control of traffic lights can be formulated as a Markov decision problem (MDP)....
The main purpose of this project is to build a mathematical model for traffic at a busy intersection...
In this paper we address the following traffic regulation problem given a junction with some incomin...