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Foundation In Digital Communication
Prijs: | € 93,25 |
Levertijd: | 3 tot 4 werkdagen |
Bindwijze: | Boek, Gebonden |
Genre: | Communicatiekunde |
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Beschrijving
A fully updated introductory text that derives the key results of digital communication from first principles.
Details
Titel: | Foundation In Digital Communication |
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auteur: | Lapidoth, Amos (swiss Federal University (eth), Zurich) |
Mediatype: | Boek |
Bindwijze: | Gebonden |
Taal: | Engels |
Druk: | 2 |
Aantal pagina's: | 916 |
Uitgever: | Cambridge University Press |
Plaats van publicatie: | 03 |
NUR: | Communicatiekunde |
Afmetingen: | 256 x 185 x 45 |
Gewicht: | 1924 gr |
ISBN/ISBN13: | 9781107177321 |
Intern nummer: | 37784925 |
Biografie (woord)
Amos Lapidoth is Professor of Information Theory at Eidgenössische Technische Hochschule Zürich, the Swiss Federal Institute of Technology, and a Fellow of the Institute of Electrical and Electronics Engineers. He received his PhD in Electrical Engineering from Stanford University, California and has held the positions of Assistant Professor and Associate Professor at the Massachusetts Institute of Technology.
Inhoudsopgave
1. Some essential notation; 2. Signals, integrals, and sets of measure zero; 3. The inner product; 4. The space L2 of energy-limited signals; 5. Convolutions and filters; 6. The frequency response of filters and bandlimited signals; 7. Passband signals and their representation; 8. Complete orthonormal systems and the sampling theorem; 9. Sampling real passband signals; 10. Mapping bits to waveforms; 11. Nyquist's criterion; 12. Stochastic processes: definition; 13. Stationary discrete-time stochastic processes; 14. Energy and power in PAM; 15. Operational power spectral density; 16. Quadrature amplitude modulation; 17. Complex random variables and processes; 18. Energy, power, and PSD in QAM; 19. The univariate Gaussian distribution; 20. Binary hypothesis testing; 21. Multi-hypothesis testing; 22. Sufficient statistics; 23. The multivariate Gaussian distribution; 24. Complex Gaussians and circular symmetry; 25. Continuous-time stochastic processes; 26. Detection in white Gaussian noise; 27. Noncoherent detection and nuisance parameters; 28. Detecting PAM and QAM signals in white Gaussian noise; 29. Linear binary block codes with antipodal signaling; 30. The radar problem; 31. A glimpse at discrete-time signal processing; 32. Intersymbol interference.
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