In this paper, an effective procedure to emplace standard and enhanced mode-S multilateration stations for airport surveillance is studied and developed. This procedure is based on meta-heuristic optimization techniques, such as genetic algorithm (GA), and is intended to obtain useful parameters for an optimal system configuration that provides acceptable performance levels. Furthermore, the procedure developed here is able to evaluate and improve previous system designs, as well as possible system enhancements. Additionally, the design strategies to be used along with the procedure proposed here are fully described. Parameters such as the number of stations, the system geometry, the kind of measurements to be used, and the system accuracy are obtained taking into account the basic requirements such as the Line of Sight, the probability of detection, and the accuracy levels. © Cambridge University Press and the European Microwave Association, 2012.

Mantilla Gaviria, I., Leonardi, M., Galati, G., Balbastre Tejedor, J., De Los Reyes Davó, E. (2012). An effective procedure to design the layout of standard and enhanced mode-S multilateration systems for airport surveillance. INTERNATIONAL JOURNAL OF MICROWAVE AND WIRELESS TECHNOLOGIES, 4(2), 199-207 [10.1017/S1759078712000219].

An effective procedure to design the layout of standard and enhanced mode-S multilateration systems for airport surveillance

LEONARDI, MAURO;GALATI, GASPARE;
2012-04-01

Abstract

In this paper, an effective procedure to emplace standard and enhanced mode-S multilateration stations for airport surveillance is studied and developed. This procedure is based on meta-heuristic optimization techniques, such as genetic algorithm (GA), and is intended to obtain useful parameters for an optimal system configuration that provides acceptable performance levels. Furthermore, the procedure developed here is able to evaluate and improve previous system designs, as well as possible system enhancements. Additionally, the design strategies to be used along with the procedure proposed here are fully described. Parameters such as the number of stations, the system geometry, the kind of measurements to be used, and the system accuracy are obtained taking into account the basic requirements such as the Line of Sight, the probability of detection, and the accuracy levels. © Cambridge University Press and the European Microwave Association, 2012.
apr-2012
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore ING-INF/03 - TELECOMUNICAZIONI
English
Con Impact Factor ISI
Accuracy level; Airport surveillance; Design strategies; Line of Sight; Metaheuristic; Multilateration; Multilateration system; Optimal system configuration; Optimization techniques; Performance level; Probability of detection; System accuracy; System enhancement; System geometry, Optimization, Genetic algorithms
http://journals.cambridge.org/action/displayAbstract?fromPage=online&aid=8560340&fulltextType=RA&fileId=S1759078712000219
Mantilla Gaviria, I., Leonardi, M., Galati, G., Balbastre Tejedor, J., De Los Reyes Davó, E. (2012). An effective procedure to design the layout of standard and enhanced mode-S multilateration systems for airport surveillance. INTERNATIONAL JOURNAL OF MICROWAVE AND WIRELESS TECHNOLOGIES, 4(2), 199-207 [10.1017/S1759078712000219].
Mantilla Gaviria, I; Leonardi, M; Galati, G; Balbastre Tejedor, J; De Los Reyes Davó, E
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/93122
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