Detecting a Radio Signal with the Unknown ...
Type de document :
Communication dans un congrès avec actes
Titre :
Detecting a Radio Signal with the Unknown Parameters and Inexactly Known Envelope Shape
Auteur(s) :
Chernoyarov, O [Auteur]
Moscow Power Engineering Institute [MPEI]
International Laboratory of Statistics of Stochastic Processes and Quantitative Finance [SSP&QF]
Dachian, Serguei [Auteur]
Laboratoire Paul Painlevé - UMR 8524 [LPP]
Korchagin, Y [Auteur]
Voronezh State University
Trifonov, M [Auteur]
Voronezh State University
Shepelev, D [Auteur]
Moscow Power Engineering Institute [MPEI]
Moscow Power Engineering Institute [MPEI]
International Laboratory of Statistics of Stochastic Processes and Quantitative Finance [SSP&QF]
Dachian, Serguei [Auteur]
Laboratoire Paul Painlevé - UMR 8524 [LPP]
Korchagin, Y [Auteur]
Voronezh State University
Trifonov, M [Auteur]
Voronezh State University
Shepelev, D [Auteur]
Moscow Power Engineering Institute [MPEI]
Titre de la manifestation scientifique :
Proceedings of the II International Conference APITECH-II 2020: Applied Physics, Information Technologies and Engineering
Ville :
Krasnoyarsk
Pays :
Russie
Date de début de la manifestation scientifique :
2020-09-25
Titre de l’ouvrage :
Journal of Physics: Conference Series
Date de publication :
2020-11-01
Discipline(s) HAL :
Statistiques [stat]/Applications [stat.AP]
Résumé en anglais : [en]
Abstract The new quasi-likelihood algorithm is considered for detecting a radio signal with the unknown amplitude, duration, initial phase and inexactly known envelope shape against Gaussian white noise. The structure and ...
Lire la suite >Abstract The new quasi-likelihood algorithm is considered for detecting a radio signal with the unknown amplitude, duration, initial phase and inexactly known envelope shape against Gaussian white noise. The structure and the statistical characteristics of the introduced detection algorithm are found. The influence is studied of the difference in the envelope shapes of the received and reference signals upon detection efficiency.Lire moins >
Lire la suite >Abstract The new quasi-likelihood algorithm is considered for detecting a radio signal with the unknown amplitude, duration, initial phase and inexactly known envelope shape against Gaussian white noise. The structure and the statistical characteristics of the introduced detection algorithm are found. The influence is studied of the difference in the envelope shapes of the received and reference signals upon detection efficiency.Lire moins >
Langue :
Anglais
Comité de lecture :
Oui
Audience :
Internationale
Vulgarisation :
Non
Collections :
Source :
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