SDH / SONET Explained in Functional Models (eBook)

Modeling the Optical Transport Network
eBook Download: PDF
2005 | 1. Auflage
300 Seiten
Wiley (Verlag)
978-0-470-09124-1 (ISBN)

Lese- und Medienproben

SDH / SONET Explained in Functional Models -  Huub van Helvoort
Systemvoraussetzungen
114,99 inkl. MwSt
  • Download sofort lieferbar
  • Zahlungsarten anzeigen
H/SONET Explained in Functional Models represents a fresh approach to the modeling of transport network technologies. This practical guide and reference text uncovers the description of SDH (Synchronous Digital Hierarchy), SONET (Synchronous Optical Network) and OTN (Optical Transport Network) transport networks and equipment using functional/atomic modeling techniques. It clearly explains the use of models in the ITU-T and ETSI standards, the transport networks and the transport equipment in the definition, implementation and deployment phase.
  • Pays particular attention to the SDH and OTN standards using functional/atomic modeling, as used and defined in the ITU-T (International Telecommunication Union) recommendations G.805 and G.809 and the ETSI (European Telecommunications Standards Institute) standards EN 300 417, as opposed to the formal language used in the ANSI (American National Standards Institute) standard T1.105.
  • Topics of discussion range from functional modeling high level transport networks to the most detailed device functions, aided by a variety of figures and tables.
  • Shows that functional modeling is not restricted to SDH/SONET but that is can be used to describe any transport network, connection-oriented and connectionless, e.g. Ethernet and MPLS networks.
  • Written by a leading authority in the area, this is the first book dedicated to the novel approach of using functional modeling to describe SDH/SONET/OTN networks.

This volume will appeal to manufacturers, engineers and all those involved in developing and deploying SDH, SONET, OTN, Ethernet, MPLS technology.  It will be an invaluable resource for postgraduate students on network communications courses and advanced users using functional modeling.



Huub van Helvoort has an M.S.c. in Electrotechnical Engineering from the Technical University of Eindhoven in 1977. He has worked at Philips Telecommunication Industries, AT&T, and as System Architect for Lucent technologies working on ISM successors ADM16/1 and Metro ADM (2nd and 3rd generation SDH equipment). In addition he has taught telecommunication technology to post graduate students at the University of Utrecht. The standardisation of VCAT, LCAS and GFP was one of Helvoort's major achievements. He was the representative for Lucent on these subjects in the international standards body ITUT and the regional standards bodies ANSI T1X1.5 and ETSI TM. He was the editor if ITU-T recommendations G.707, G.783, G.7042. He chaired the working group TM1 and TM1-WP3 in ETSI and of the ETSI standard EN 300 417.


H/SONET Explained in Functional Models represents a fresh approach to the modeling of transport network technologies. This practical guide and reference text uncovers the description of SDH (Synchronous Digital Hierarchy), SONET (Synchronous Optical Network) and OTN (Optical Transport Network) transport networks and equipment using functional/atomic modeling techniques. It clearly explains the use of models in the ITU-T and ETSI standards, the transport networks and the transport equipment in the definition, implementation and deployment phase. Pays particular attention to the SDH and OTN standards using functional/atomic modeling, as used and defined in the ITU-T (International Telecommunication Union) recommendations G.805 and G.809 and the ETSI (European Telecommunications Standards Institute) standards EN 300 417, as opposed to the formal language used in the ANSI (American National Standards Institute) standard T1.105. Topics of discussion range from functional modeling high level transport networks to the most detailed device functions, aided by a variety of figures and tables. Shows that functional modeling is not restricted to SDH/SONET but that is can be used to describe any transport network, connection-oriented and connectionless, e.g. Ethernet and MPLS networks. Written by a leading authority in the area, this is the first book dedicated to the novel approach of using functional modeling to describe SDH/SONET/OTN networks. This volume will appeal to manufacturers, engineers and all those involved in developing and deploying SDH, SONET, OTN, Ethernet, MPLS technology. It will be an invaluable resource for postgraduate students on network communications courses and advanced users using functional modeling.

Huub van Helvoort has an M.S.c. in Electrotechnical Engineering from the Technical University of Eindhoven in 1977. He has worked at Philips Telecommunication Industries, AT&T, and as System Architect for Lucent technologies working on ISM successors ADM16/1 and Metro ADM (2nd and 3rd generation SDH equipment). In addition he has taught telecommunication technology to post graduate students at the University of Utrecht. The standardisation of VCAT, LCAS and GFP was one of Helvoort's major achievements. He was the representative for Lucent on these subjects in the international standards body ITUT and the regional standards bodies ANSI T1X1.5 and ETSI TM. He was the editor if ITU-T recommendations G.707, G.783, G.7042. He chaired the working group TM1 and TM1-WP3 in ETSI and of the ETSI standard EN 300 417.

Preface.

Acknowledgements.

Abbreviations.

1 Introduction.

1.1 History.

1.2 Justification.

1.3 Remarks on the concept.

1.4 Standards structure.

2 Functional modeling.

2.1 Functional architecture of transport networks.

2.2 Functional model requirements.

2.3 Functional model basic structure.

2.4 Functional model detailed structure.2

2.5 Client/server relationship.

2.6 Layer network interworking.

2.7 Linking the functional model and the information model.

2.8 Application of concepts to network topologies and
structures.

3 Partitioning and layering.

3.1 Layering concept.

3.2 Partitioning concept.

3.3 Concept applications.9

4 Expansion and reduction.

4.1 Expansion of layer networks.

4.2 General principles of expansion of layers.

4.3 Reduction of detail.

5 Adaptation functions.

5.1 Generic adaptation function.

5.2 Adaptation function examples.

6 Trail termination functions.

6.1 Generic trail termination function.

6.2 Trail termination function examples.

7 Connection functions.

7.1 Generic connection function.

7.2 Connection function example.

7.3 Connection matrix examples.

8 Connection supervision.

8.1 Quality of Service.

8.2 Connection monitoring methods.

8.3 Connection monitoring applications.

9 Protection models.

9.1 Introduction.

9.2 Protection.

10 Compound functional models and their
decomposition.

10.1 LCAS disabled VCAT functions.

10.2 LCAS-capable VCAT functions.

10.3 VCAT network model.

10.4 S4-Xc to S4-Xc
interworking function.

10.5 VCAT-CCAT interworking network model.

11 Example functional models to exercise.

11.1 Device level functional model.

11.2 Equipment detailed functional model.

11.3 Network element functional model.

11.4 Trail connection model.

11.5 Synchronization network model.

11.6 OTN network element model.

11.7 Data transport model.

11.8 Ethernet layer network model.

11.9 MPLS layer network model.

Glossary.

References.

Index.

Erscheint lt. Verlag 1.11.2005
Sprache englisch
Themenwelt Technik Elektrotechnik / Energietechnik
Technik Nachrichtentechnik
Schlagworte Electrical & Electronics Engineering • Elektrotechnik u. Elektronik • Optical Communications • Optische Nachrichtentechnik
ISBN-10 0-470-09124-X / 047009124X
ISBN-13 978-0-470-09124-1 / 9780470091241
Haben Sie eine Frage zum Produkt?
PDFPDF (Adobe DRM)
Größe: 3,8 MB

Kopierschutz: Adobe-DRM
Adobe-DRM ist ein Kopierschutz, der das eBook vor Mißbrauch schützen soll. Dabei wird das eBook bereits beim Download auf Ihre persönliche Adobe-ID autorisiert. Lesen können Sie das eBook dann nur auf den Geräten, welche ebenfalls auf Ihre Adobe-ID registriert sind.
Details zum Adobe-DRM

Dateiformat: PDF (Portable Document Format)
Mit einem festen Seiten­layout eignet sich die PDF besonders für Fach­bücher mit Spalten, Tabellen und Abbild­ungen. Eine PDF kann auf fast allen Geräten ange­zeigt werden, ist aber für kleine Displays (Smart­phone, eReader) nur einge­schränkt geeignet.

Systemvoraussetzungen:
PC/Mac: Mit einem PC oder Mac können Sie dieses eBook lesen. Sie benötigen eine Adobe-ID und die Software Adobe Digital Editions (kostenlos). Von der Benutzung der OverDrive Media Console raten wir Ihnen ab. Erfahrungsgemäß treten hier gehäuft Probleme mit dem Adobe DRM auf.
eReader: Dieses eBook kann mit (fast) allen eBook-Readern gelesen werden. Mit dem amazon-Kindle ist es aber nicht kompatibel.
Smartphone/Tablet: Egal ob Apple oder Android, dieses eBook können Sie lesen. Sie benötigen eine Adobe-ID sowie eine kostenlose App.
Geräteliste und zusätzliche Hinweise

Buying eBooks from abroad
For tax law reasons we can sell eBooks just within Germany and Switzerland. Regrettably we cannot fulfill eBook-orders from other countries.

Mehr entdecken
aus dem Bereich
Lehrbuch zu Grundlagen, Technologie und Praxis

von Konrad Mertens

eBook Download (2022)
Carl Hanser Verlag GmbH & Co. KG
34,99
Ressourcen und Bereitstellung

von Martin Kaltschmitt; Karl Stampfer

eBook Download (2023)
Springer Fachmedien Wiesbaden (Verlag)
66,99
200 Aufgaben zum sicheren Umgang mit Quellen ionisierender Strahlung

von Jan-Willem Vahlbruch; Hans-Gerrit Vogt

eBook Download (2023)
Carl Hanser Verlag GmbH & Co. KG
34,99