Advanced Digital Optical Communications, Second Edition, 2nd Edition
This second edition of Digital Optical Communications provides a comprehensive treatment of the modern aspects of coherent homodyne and self-coherent reception techniques using algorithms incorporated in digital signal processing (DSP) systems and DSP-based transmitters to overcome several linear...
Otros Autores: | |
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Formato: | Libro electrónico |
Idioma: | Inglés |
Publicado: |
CRC Press
2017.
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Edición: | 2nd ed |
Colección: | Optics and photonics (Boca Raton, Fla.) ;
12. |
Materias: | |
Ver en Biblioteca Universitat Ramon Llull: | https://discovery.url.edu/permalink/34CSUC_URL/1im36ta/alma991009629211606719 |
Tabla de Contenidos:
- Front Cover; Contents; Preface; Acknowledgments; Author; Acronyms; Chapter 1: Introduction; Chapter 2: Optical Fibers; Chapter 3: Optical Transmitters; Chapter 4: Optical Receivers and Transmission Performance : Fundamentals; Chapter 5: Optical Coherent Detection and Processing Systems; Chapter 6: Differential Phase Shift Keying Photonic Systems; Chapter 7: Multilevel Amplitude and Phase Shift Keying Optical Transmission; Chapter 8: Continuous Phase Modulation Format Optical Systems; Chapter 9: Frequency Discrimination Reception for Optical Minimum Shift Keying
- Chapter 10: Partial Responses and Single-Sideband Optical ModulationChapter 11: OFDM Optical Transmission Systems; Chapter 12: Digital Signal Processing in Optical Transmission Systems under Self-Homodyne Coherent Reception; Chapter 13: DSP-Based Coherent Optical Transmission Systems; Chapter 14: DSP Algorithms and Coherent Transmission Systems; Chapter 15: Optical Soliton Transmission System; Chapter 16: Higher-Order Spectrum Coherent Receivers; Chapter 17: Temporal Lens and Adaptive Electronic/Photonic Equalization
- Chapter 18: Comparison of Modulation Formats for Digital Optical CommunicationsAnnex 1: Technical Data of Single-Mode Optical Fibers; Annex 2: Coherent Balanced Receiver and Method for Noise Suppression; Annex 3: RMS Definition and Power Measurement; Annex 4: Power Budget; Annex 5: Modeling of Digital Photonic Transmission Systems; Back Cover