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Optimal multiple hypothesis testing and invariance applications
Details
This book aims to study two problems, namely optimal hypothesis testing in the sense of Neyman-Pearson in the presence of multiple hypotheses and optimal hypothesis testing in the presence of non-random unknown parameters (nuisance parameters). Both problems occur frequently in different applications and their optimal solution involves some fine details. In the first part, the multiple hypothesis testing problem is examined and the results are applied to the problem of radar sidelobe blanker system design. In the second part, uniformly most powerful invariant (UMPI) tests are examined. UMPI tests are applicable when there are unknown non-random constants in the hypothesis testing. UMPI tests retain the optimality properties of uniformly most powerful tests (UMP) in a restricted setting of transform invariance with respect to the unknown parameters. UMPI tests are applied to two problems, namely the problem of low probability of intercept signal detection and the frame synchronization word detection. UMPI and generalized likelihood ratio test (GLRT) approach-based tests are derived for both problems and their performances are compared accordingly.
Autorentext
Osman Coskun received the B.S. and the M.S. degrees from Hacettepe University, Ankara, Turkey, in 2003, and, in 2007, and the Ph.D. degree from Middle East Technical University, Ankara, Turkey, in 2017, respectively, all in electrical engineering. His research interest includes statistical signal processing and electronic warfare.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09786200474698
- Genre Elektrotechnik
- Sprache Englisch
- Anzahl Seiten 144
- Größe H220mm x B150mm x T10mm
- Jahr 2020
- EAN 9786200474698
- Format Kartonierter Einband
- ISBN 6200474699
- Veröffentlichung 17.01.2020
- Titel Optimal multiple hypothesis testing and invariance applications
- Autor Osman Coskun
- Untertitel Applications in radar side-lobe blanker design, Low Probability Intercept radars and frame synchronization
- Gewicht 233g
- Herausgeber LAP LAMBERT Academic Publishing