Airspace surveillance is a significant issue for many countries to control and manage their airspace. The number of radars used and their coverage rate are the main issues to consider in this case. Therefore, this paper addresses the problem of finding the best radar locations to obtain the highest coverage rate with the least possible number of radars in a certain region. The radar placement problem is considered as a multi-objective optimization problem with two objectives: the number of radars and the coverage rate. To perfectly solve this optimization problem, a set of multi-objective meta-heuristic approaches based on simulated annealing, memory-based steady-state genetic algorithm, a decomposition-based multi-objective algorithm...
In this paper we introduce a bi-objective location-allocation problem for Unmanned Aircraft Systems ...
Vehicles such as automobiles, ships, satellites, and aircraft have a limited amount of physical spac...
The performance of a passive radar network can be greatly improved by an optimal radar network struc...
Reconnaissance is an important aspect of military planning. Tools that help an alysts monitor and ma...
International audienceThe configuration of radar networks is a complex problem that is often perform...
In emerging network-centric warfare scenarios, the location of sensors in the sensor-grid plays a do...
Multilateration (MLAT) systems are powerful means for air traffic surveillance. These systems aim to...
In this communication, we investigate the performance of the Non-dominated Sorting Genetic Algorithm...
Narcotics smuggling across the Caribbean Sea is a growing concern for the United States Coast Guard....
International audienceThis paper deals with the problem of the management of Electronically Steered ...
This thesis furthers the development of Genetic Algorithms (GAs) and their application to the design...
Multiple-Input Multiple-Output (MIMO) radars can improve the angular resolution of automotive radar ...
This paper focuses on optimal sensor deployment for indoor localization with a multi-objective evolu...
The ultimate goal of any sensing system is to build situation awareness. Existing<br/>solutions for ...
In this paper we introduce a bi-objective location-allocation problem for Unmanned Aircraft Systems ...
Vehicles such as automobiles, ships, satellites, and aircraft have a limited amount of physical spac...
The performance of a passive radar network can be greatly improved by an optimal radar network struc...
Reconnaissance is an important aspect of military planning. Tools that help an alysts monitor and ma...
International audienceThe configuration of radar networks is a complex problem that is often perform...
In emerging network-centric warfare scenarios, the location of sensors in the sensor-grid plays a do...
Multilateration (MLAT) systems are powerful means for air traffic surveillance. These systems aim to...
In this communication, we investigate the performance of the Non-dominated Sorting Genetic Algorithm...
Narcotics smuggling across the Caribbean Sea is a growing concern for the United States Coast Guard....
International audienceThis paper deals with the problem of the management of Electronically Steered ...
This thesis furthers the development of Genetic Algorithms (GAs) and their application to the design...
Multiple-Input Multiple-Output (MIMO) radars can improve the angular resolution of automotive radar ...
This paper focuses on optimal sensor deployment for indoor localization with a multi-objective evolu...
The ultimate goal of any sensing system is to build situation awareness. Existing<br/>solutions for ...
In this paper we introduce a bi-objective location-allocation problem for Unmanned Aircraft Systems ...
Vehicles such as automobiles, ships, satellites, and aircraft have a limited amount of physical spac...
The performance of a passive radar network can be greatly improved by an optimal radar network struc...