Tracking y Multitracking Radar

dc.creatorFlórez Zuluaga, Jimmy Anderson
dc.date.accessioned2021-06-17T12:57:08Z
dc.date.accessioned2022-09-29T15:45:46Z
dc.date.available2021-06-17T12:57:08Z
dc.date.available2022-09-29T15:45:46Z
dc.date.created2021-06-17T12:57:08Z
dc.identifierhttps://hdl.handle.net/20.500.12963/74
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/3781913
dc.publisherEscuela de Postgrados de la Fuerza Aérea Colombiana
dc.relationhttps://publicacionesfac.com/index.php/cienciaypoderaereo/article/view/9/10
dc.relationhttps://publicacionesfac.com/index.php/cienciaypoderaereo/article/view/9/111
dc.relation/*ref*/Air Traffic Control Association (2011). Air Traffic Control Association - 56th Air Traffic Control Association. Annual Conference 2011.
dc.relation/*ref*/Barrios & Motai. (2011). Improving Estimation of Vehicle's Trayectory Using the Latest Global positioning System Whit Kalman Filtering. IEEE Transactions on Signal Processing. USA: Univ. of Vermont, Burlington. https://doi.org/10.1109/TIM.2011.2147670
dc.relation/*ref*/Centro de Desarrollo Tecnológico Aeroespacial para la Defensa.(2013). Documentación Sistema de Comando y Control Colombiano Horus. 1 ed. Rionegro: autor.
dc.relation/*ref*/CETAD (2012). Imagen Señal Cruda - Sistema de Comando y Control Colombiano. Rionegro: Autor.
dc.relation/*ref*/CETAD-FAC. (2009). Imagen Señal Procesada Con Tracking - Sistema de Comando y Control Colombiano. Rionegro: Autor.
dc.relation/*ref*/Chen, S.H., Hsu. C. W. & Huang, S. C. (2012, Sept). Recursive estimation of vehicle position by using navigation sensor fusion. In 12th International Conference on ITS Telecommunications, ITST 2012, pp. 532-536.
dc.relation/*ref*/Ching, I. P. W. L., Yongzhi, L. Chin, & D. Mital. (1998) Neurofuzzy techniques for airborne target tracking. In International Conference on Knowledge-Based Intelligent Electronic Systems, Proceedings, KES. Vol. 2, pp. 251-257. NJ, United States: Piscataway.
dc.relation/*ref*/Cobano, J. A., Conde, R., Alejo, D., & Ollero, A. (2011, May). Path planning based on Genetic Algorithms and the Monte-Carlo method to avoid aerial vehicle collisions under uncertainties. IEEE International Conference on Robotics and Automation, pp. 4429-4434. Seville, Spain: Univ. of Seville. https://doi.org/10.1109/ICRA.2011.5980246
dc.relation/*ref*/Deng, Z.L. Y., Gao, L. Mao, Y. Li, & Hao, G., (2005, Oct.) New approach to information fusion steady-state Kalman filtering. Automatica. Vol. 41(10), pp. 1695-1707. Department of Automation, Heilongjiang University, Harbin, People's Republic of China. https://doi.org/10.1016/j.automatica.2005.04.020
dc.relation/*ref*/El Abed, Dubuisson, & Béréziat. (2012, Apr). Spatio-temporal targetmeasure association using an adaptive geometrical approach. Pattern Recognition Letters. Vol. 33 (6), pp. 765-774. Laboratoire d'Informatique de Paris 6, Université Pierre et Marie Curie, 4 place Jussieu, 75005 Paris, France. https://doi.org/10.1016/j.patrec.2011.11.018
dc.relation/*ref*/Evans, T. (1997). Airborne situation awareness. In IEE Colloquium (Digest). No. 169, pp. 5/1-5/13.
dc.relation/*ref*/Evans, T. (1997). Airborne situation awareness. In IEE Colloquium (Digest). No. 169, pp. 5/1-5/13.
dc.relation/*ref*/Gong, C. & McNally, D. (2004). A methodology for automated trajectory prediction analysis. In Collection of Technical Papers - AIAA Guidance, Navigation, and Control Conference. Vol. 1, pp. 432-445.NASA Ames. https://doi.org/10.2514/6.2004-4788
dc.relation/*ref*/Jiménez Martin, J. L, (2005). Nuevas técnicas de generación de señal para sistemas radar de alata resolución y baja probabilidad de error. Madrid, España: Universidad Politécnica de Madrid.
dc.relation/*ref*/Khan, R. H. (1996). Target detection and tracking with HF radar using ISAR techniques. In IEEE National Radar Conference - Proceedings., pp. 94-99. NJ, United States: Piscataway. https://doi.org/10.1109/NRC.1996.510663
dc.relation/*ref*/Khrebtov, P., Pöttker, A., Max S. & Vossick, M. (2007). A wireless location system for sensing the relative position between mining vehicles. In Conference Record - IEEE Instrumentation and Measurement Technology Conference. https://doi.org/10.1109/IMTC.2007.379211
dc.relation/*ref*/Kolawole, M. (2002). Decision Theory. In Radar Systems, Peak Detection and Tracking. Elsevier. https://doi.org/10.1016/B978-075065773-0/50014-5
dc.relation/*ref*/Liu J. & Deng, Z. (2012). Information Fusion Kalman Predictor for Two-Sensor Multichannel ARMA Signal System with Time-Delayed Measurements. Procedia Engineerin. Vol. 29, pp. 623-629. https://doi.org/10.1016/j.proeng.2012.01.014
dc.relation/*ref*/Matsunaga, K., Senoguchi A., & Koga, T. (2012). Validation test of Downlink Aircraft Parameters via SSR mode S experimental system. In Proceedings International Radar Symposium, pp. 193-198. https://doi.org/10.1109/IRS.2012.6233314
dc.relation/*ref*/Miquel, T. F, Mora-Camino, & Loscos, J.-M (2006). Path stretching and tracking for time-based aircraft spacing at meter fix. In Collection of Technical Papers - AIAA Guidance, Navigation, and Control Conference 2006. Vol. 1, pp. 411-418. https://doi.org/10.2514/6.2006-6064
dc.relation/*ref*/Neri, F. C. (2007). Electronic Defense Systems.
dc.relation/*ref*/Nolan, M. S. (1998). Fundamentals of Air Traffic Control. Third Edit. OACI - Organización de los Sistemas de Sensores de Vigilancia (1998). Manual Sobre Ensayo de Sistemas del Radar de Vigilancia. Primera Ed: Autor.
dc.relation/*ref*/_______(1998). Metodología para los ensayos de actuación de los sistemas radar. In Manual Sobre Ensayo de Sistemas del Radar de Vigilancia. Primera Ed.: Autor.
dc.relation/*ref*/Pelosi, M., Kopp C., & Brown, M. (2012). Range-limited UAV trajectory using terrain masking under radar detection risk. Applied Artificial Intelligenc. Vol. 26 (8), pp. 743-759. https://doi.org/10.1080/08839514.2012.713308
dc.relation/*ref*/Ran, C. & Deng, Z. (2012, Jun). Self-tuning weighted measurement fusion Kalman filtering algorithm," Computational Statistics & Data Analysis. Vol. 56 (6), pp. 2112-2128. https://doi.org/10.1016/j.csda.2012.01.001
dc.relation/*ref*/_______________. (2011, Aug.) Self-tuning distributed measurement fusion Kalman estimator for the multi-channel ARMA signal. Signal Processing. Vol. 91(8), pp. 2028-204. https://doi.org/10.1016/j.sigpro.2011.03.010
dc.relation/*ref*/Richards, M. A. (2005). 2.3 Clutter. In: Fundamentals of Radar Signal Procesing. Georgia Tech Research Institute
dc.relation/*ref*/Rushby, J. (1994). Critical System Properties. Vol. 43(2), pp. 189-219. National Aeronautics and Space Administration Langley. Research Center and the US Naval Research Laboratory. https://doi.org/10.1016/0951-8320(94)90065-5
dc.relation/*ref*/Skolnik, M. I. (2001). 5.3 Detection Criteria. In Introduction to Radar System. Third Edit. MacGraw-Hill.
dc.relation/*ref*/____________ (1990) Radar Handbook. Second Ed. McGraw Hill.
dc.relation/*ref*/____________ (2008). Chapter 7. Automatic Detection Tracking ande sensor integration. In Radar Handbook. Third Edit. New York.
dc.relation/*ref*/Stakkeland, M. & Brekke, E. F. (2009). Tracking of targets with state dependent measurement errors using recursive BLUE filter, pp. 2052-2061. Univ. Grad. Center, Kjeller, Norway.
dc.relation/*ref*/Tomlin, C., (1998). Hybrid Control of Air Traffic Management System. Ph.D. Dissertation. U california.
dc.relation/*ref*/Víctor Baptista, U. E.; Frencil, C.; Val, Joao Bosco Ribeiro Do.; & R. S. M. E. (2012, Apr). Filtragem Utilizando Imm-Ekf-Blue Em Modelos De Giro Constante Con Taxa De Giro Desconhecida. Universidad Estadual de Campinas.
dc.relation/*ref*/Wang X. & Sun, S.L. (2012). Measurement feedback self-tuning weighted measurement fusion Kalman filter for systems with correlated noises. Journal of Applied Mathematics. https://doi.org/10.1155/2012/324296
dc.relation/*ref*/Zhang, P. W., Qi, & Deng, Z. (2012). Multi-channel ARMA Signal Covariance Intersection Fusion Kalman Predictor. Procedia Engineering. Vol. 29, pp. 609-615. International Workshop on Information and Electronics Engineering: Elsevier. https://doi.org/10.1016/j.proeng.2012.01.012
dc.sourceCiencia y Poder Aéreo; Vol. 8 No. 1 (2013): Enero - Diciembre; 81-90
dc.sourceCiencia y Poder Aéreo; Vol. 8 Núm. 1 (2013): Enero - Diciembre; 81-90
dc.sourceCiencia y Poder Aéreo; v. 8 n. 1 (2013): Enero - Diciembre; 81-90
dc.source2389-9468
dc.source1909-7050
dc.subjectPredicción de trayectorias
dc.subjectprocesamiento de señales radar
dc.subjectracking radar
dc.titleTracking and multitracking radar
dc.titleTracking y Multitracking Radar
dc.typeinfo:eu-repo/semantics/article
dc.typeinfo:eu-repo/semantics/publishedVersion


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