| Titre : |
Optical Networks |
| Type de document : |
texte imprimé |
| Auteurs : |
Debasish Datta, Auteur |
| Mention d'édition : |
1er édition |
| Editeur : |
Éditeur Oxford University Press |
| Année de publication : |
2023 |
| Importance : |
698 p. |
| Format : |
26 cm. |
| ISBN/ISSN/EAN : |
978-0-19-289048-1 |
| Note générale : |
Optical Networks |
| Langues : |
Anglais (eng) |
| Mots-clés : |
Optical Networks Telecommunication networks Optical couplers Semiconductor lasers Optical receivers Optical filters |
| Index. décimale : |
535 |
| Résumé : |
Following the emergence of lasers and optical fibers, optical networking made its beginning in the 1970s with high-speed LANs/MANs. In the 1980s, when the bandwidth of intercity microwave links turned out to be inadequate for digital telephony, the technology for single-wavelength optical communications using SONET/SDH arrived as a saviour to replace the microwave links. However, single-wavelength links couldn't utilize the huge bandwidth (25 THz) of optical fibers, while the bandwidth demands kept soaring. This necessitated the use of wavelength-division multiplexing (WDM) for concurrent transmission over multiple wavelengths, increasing the available bandwidth significantly.
Today, optical networking has become an indispensable part of telecommunication networks at all hierarchical levels. The book Optical Networks provides a graduate level presentation of optical networks, capturing the past, present and ensuing developments with a unique blend of breadth and depth. The book is organized in four parts and three appendices. Part I presents an overview and the enabling technologies in two chapters, Part II presents the single-wavelength optical networks in three chapters, while Part III deals with the various forms of WDM optical networks in four chapters. Finally, Part IV presents some selected topics in six chapters, dealing with a number of contemporary and emerging topics.
Optical Networks provides a comprehensive all-in-one text for beginning graduate as well as final-year undergraduate students, and also allows R&D engineers to quickly refresh the basics and then move on to emerging topics.
|
| Note de contenu : |
Sommaire:
Part I: Introduction
1: Optical Networks: An Overview
2: Technologies for Optical Networking
Part II: Single-Wavelength Optical Networks
3: Optical Local/Metropolitan and Storage-Area Networks
4: Optical Access Networks
5: SONET/SDH, OTN, and RPR
Part III: WDM Optical Networks
6: WDM Local-Area Networks
7: WDM Access Networks
8: WDM Metro Networks
9: WDM Long-Haul Networks
Part IV: Selected Topics in Optical Networks
10: Transmission Impairement and Power Consumption in Optical Networks
11: Survivabilité of Optical Networks
12: Optical Network Control and Management
13: Datacenter Networks
14: Elastic Optical Networks
15: Optical Packet and Burst-Switched Networks
Appendix A: Basics of Linear Programming and the Simplex Algorithm
Appendix B: Noise Processes in Optical Receivers
Appendix C: Basics of Queuing Systems
|
| En ligne : |
https://m.media-amazon.com/images/I/510gDJKevhL._AC_UF1000,1000_QL80_.jpg |
Optical Networks [texte imprimé] / Debasish Datta, Auteur . - 1er édition . - Éditeur Oxford University Press, 2023 . - 698 p. ; 26 cm. ISBN : 978-0-19-289048-1 Optical Networks Langues : Anglais ( eng)
| Mots-clés : |
Optical Networks Telecommunication networks Optical couplers Semiconductor lasers Optical receivers Optical filters |
| Index. décimale : |
535 |
| Résumé : |
Following the emergence of lasers and optical fibers, optical networking made its beginning in the 1970s with high-speed LANs/MANs. In the 1980s, when the bandwidth of intercity microwave links turned out to be inadequate for digital telephony, the technology for single-wavelength optical communications using SONET/SDH arrived as a saviour to replace the microwave links. However, single-wavelength links couldn't utilize the huge bandwidth (25 THz) of optical fibers, while the bandwidth demands kept soaring. This necessitated the use of wavelength-division multiplexing (WDM) for concurrent transmission over multiple wavelengths, increasing the available bandwidth significantly.
Today, optical networking has become an indispensable part of telecommunication networks at all hierarchical levels. The book Optical Networks provides a graduate level presentation of optical networks, capturing the past, present and ensuing developments with a unique blend of breadth and depth. The book is organized in four parts and three appendices. Part I presents an overview and the enabling technologies in two chapters, Part II presents the single-wavelength optical networks in three chapters, while Part III deals with the various forms of WDM optical networks in four chapters. Finally, Part IV presents some selected topics in six chapters, dealing with a number of contemporary and emerging topics.
Optical Networks provides a comprehensive all-in-one text for beginning graduate as well as final-year undergraduate students, and also allows R&D engineers to quickly refresh the basics and then move on to emerging topics.
|
| Note de contenu : |
Sommaire:
Part I: Introduction
1: Optical Networks: An Overview
2: Technologies for Optical Networking
Part II: Single-Wavelength Optical Networks
3: Optical Local/Metropolitan and Storage-Area Networks
4: Optical Access Networks
5: SONET/SDH, OTN, and RPR
Part III: WDM Optical Networks
6: WDM Local-Area Networks
7: WDM Access Networks
8: WDM Metro Networks
9: WDM Long-Haul Networks
Part IV: Selected Topics in Optical Networks
10: Transmission Impairement and Power Consumption in Optical Networks
11: Survivabilité of Optical Networks
12: Optical Network Control and Management
13: Datacenter Networks
14: Elastic Optical Networks
15: Optical Packet and Burst-Switched Networks
Appendix A: Basics of Linear Programming and the Simplex Algorithm
Appendix B: Noise Processes in Optical Receivers
Appendix C: Basics of Queuing Systems
|
| En ligne : |
https://m.media-amazon.com/images/I/510gDJKevhL._AC_UF1000,1000_QL80_.jpg |
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