ITU-T L 47-2000 Access Facilities Using Hybrid Fibre Copper Networks Series L Construction Installation and Protection of Cables and Other Elements of Outside Plant《采用混合光纤 铜网的接入设备系.pdf
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1、INTERNATIONAL TELECOMMUNICATION UNION ITU-T TE LEC0 MM UN I CATI0 N STANDARDIZATION SECTOR OF ITU L.47 (1 0/2000) SERIES L: CONSTRUCTION, INSTALLATION AND PROTECTION OF CABLES AND OTHER ELEMENTS OF OUTSIDE PLANT Access facilities using hybrid fibrelcopper networks ITU-T Recommendation L.47 (Formerly
2、 CCITT Recommendation) ITU-T Recommendation L.47 Access facilities using hybrid fibrekopper networks Summary This Recommendation gives information and guidelines about access facilities using HFC (“Hybrid Fibre/Copper“) networks. HFC networks are necessary for the future introduction of multimedia s
3、ervices with several broadband applications. HFC networks offer more chances of use as only pure networks for telecommunication or for CATV (Cable Television) distribution. Additional services as Pay-TV, Pay-per-View, Video-on Demand, home-banking, -working, -shopping and Internet access can be offe
4、red by means of these networks. HFC networks represent also a step in the evolution process to GI1 (Global Information Infrastructure), that means a connection between CATV, telecommunications, data and mobile networks. Appendix II provides examples of HFC networks. Source ITU-T Recommendation L.47
5、was prepared by ITU-T Study Group 6 (1997-2000) and approved by the World Telecommunication Standardization Assembly (Montreal, 27 September - 6 October 2000). ITU-T L.47 (10/2000) i FOREWORD The International Telecommunication Union (ITU) is the United Nations specialized agency in the field of tel
6、ecommunications. The ITU Telecommunication Standardization Sector (ITU-T) is a permanent organ of ITU. ITU-T is responsible for studying technical, operating and tariff questions and issuing Recommendations on them with a view to standardizing telecommunications on a worldwide basis. The World Telec
7、ommunication Standardization Assembly (WTSA), which meets every four years, establishes the topics for study by the ITU-T study groups which, in turn, produce Recommendations on these topics. The approval of ITU-T Recommendations is covered by the procedure laid down in WTSA Resolution 1. In some ar
8、eas of information technology which fall within ITU-Ts purview, the necessary standards are prepared on a collaborative basis with IS0 and IEC. NOTE In this Recommendation, the expression “Administration“ is used for conciseness to indicate both a telecommunication administration and a recognized op
9、erating agency. INTELLECTUAL PROPERTY RIGHTS ITU draws attention to the possibility that the practice or implementation of this Recommendation may involve the use of a claimed Intellectual Property Right. ITU takes no position concerning the evidence, validity or applicability of claimed Intellectua
10、l Property Rights, whether asserted by ITU members or others outside of the Recommendation development process. As of the date of approval of this Recommendation, ITU had not received notice of intellectual property, protected by patents, which may be required to implement this Recommendation. Howev
11、er, implementors are cautioned that this may not represent the latest information and are therefore strongly urged to consult the TSB patent database. O ITU 2001 All rights reserved. No part of this publication may be reproduced or utilized in any form or by any means, electronic or mechanical, incl
12、uding photocopying and microfilm, without permission in writing from ITU. CONTENTS 1 2 3 3.1 3.2 4 4.1 4.2 Scope Fundamental types of hybrid fibre/copper networks Optical elements . Physical elements of hybrid fibre/copper networks . 3.1.1 Optical cables 3.1.2 Optical connectors . 3.1.3 Optical ampl
13、ifiers 3.1.4 Optical splitters . Electrical and copper elements . 3.2.1 HFC-S networks 3.2.2 HFC-C networks . Installation HFC-S networks . HFC-C networks . 4.2.1 Coaxial cables . 4.2.2 Cabinets . 4.2.3 Indoor installation . Appendix I . Questionnaire on Question 13/6 Access facilities using hybrid
14、fibre/copper networks . I . 1 Introduction 1.2 Topology . 1.3 Cable construction 1.4 Components for CATV networks . 1.5 Cable installation 1.6 Cabinet installation . Appendix II - Italian experience on HFC-C networks II . 1 Introduction 11.2 The HFC-C project . 11.3 Network infrastructure for Italy
15、11.4 Coaxial network design 11.5 Appendix III - Indonesias experience on HFC-C networks Access facilities using hybrid fibre/copper networks . III . 1 Introduction Evolution towards all optical networks 111.2 Background . ITU-T L.47 (10/2000) Page 1 1 2 2 2 2 3 4 8 8 8 10 13 14 15 15 15 . 111 111.3
16、111.4 111.5 111.6 111.7 III . 8 111.9 III . 1 o III . 1 1 III . 12 Network topology . 111.3.1 Transport networktopology 111.3.2 Access network topology 111.3.3 Coaxial network topology . Cable construction 111.4.1 Optical cabling 111.4.2 Coaxial cabling Bandwidth allocation System configuration 111.
17、6.1 Headend . 111.6.2 Distribution hub . 111.6.3 Fibre node 111.6.4 Amplifier (active component) . 111.6.5 Passive component Powering system . Outside plant (OSP) 111.7.1 Powering system in coaxial cable . 111.8.1 Pole III . 8.2 Cabinet Standardization . Coaxial network planning tool . Component for
18、 coaxial HFC-C networks . Legend Page 15 15 16 16 17 17 17 18 18 19 19 20 20 20 21 21 21 21 22 22 22 23 23 iv ITU-T L.47 (10/2000) ITU-T Recommendation L.47 Access facilities using hybrid fibrekopper networks 1 Scope This Recommendation: e gives general information on the fundamental types of hybrid
19、 fibre/copper networks; describes the most important physical elements of HFC networks apart from transmission gives general information and guidelines for the installation of HFC networks. e equipment; e 2 Very different HFC network topologies can be considered, according to different Administratio
20、ns and private operators requirements, different country or regional situations, different provided multimedia services. Moreover, HFC networks can be based on already existing telephone networks, both for the fibre and for the copper part of the network. However, the following general consideration
21、s can be applied to all the HFC network types. An HFC network can be thought as composed of two main sections: Fundamental types of hybrid fibrekopper networks e First section: the “Transport Network“ where the services are generated and delivered (at a national, regional or local level) up to main
22、distribution points. The extension of the Transport Network can be huge. The physical transmission medium is the optical fibre. to the main distribution points. The extension of the Access Network is typically limited to a few kms in length. The bearer used in the first part of the Access Network is
23、 the optical fibre. The physical transmission medium of the last portion of the Access Network up to the users can be the symmetrical copper pair (“HFC-S“ networks) or the coaxial copper/aluminium pair (“HFC-C“ networks). Typically, HFC-S networks are directly derived from traditional telephone copp
24、er access networks. The evolution towards new services can be achieved by means of particular data compression (JPEG, MPEG for instance) and transmission (HDSL, ADSL, VDSL for instance) techniques on the existing symmetrical pair cables. It is worth noticing that HFC-S type identifies a wide set of
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