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高速DSL技術の「欧州デジタルアジェンダ」目標達成への影響

The Impact of Accelerated DSL Technologies on Meeting European Digital Agenda Targets

発行 Analysys Mason 商品コード 246543
出版日 ページ情報 英文 PPT (40 slides)
納期: 即日から翌営業日
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高速DSL技術の「欧州デジタルアジェンダ」目標達成への影響 The Impact of Accelerated DSL Technologies on Meeting European Digital Agenda Targets
出版日: 2012年06月29日 ページ情報: 英文 PPT (40 slides)
概要

ベクタリング、ペアボンディング、ファントムモード技術により、銅線の達成レートは大幅に改善し、高速で安価な導入が実現するでしょう。

当レポートでは、超高速(superfastまたはultra-fast)ブロードバンドとしても知られる30Mbps・100Mbpsブロードバンドの普及を目指した欧州委員会によるデジタルアジェンダ目標のこれらの技術による達成の可能性を検証し、概略下記の構成でお届けいたします。

提供内容

  • 高速DSL技術の達成レートの分析
  • 実際のネットワークでのローカル&キャビネットループトポロジーモデル
  • 銅線での30Mbps・100Mbpsの可能性の検証
  • 2020年の100Mbpsサービスの50%の導入率実現に向けた銅線の役割の検証
目次

Attempting to stretch copper for a 100Mbps broadband target shows up the huge variations between legacy network topologies: it could work well in the final third in some countries, but may have limited impact in others.

Vectoring, pair-bonding and phantom-mode technologies promise greatly improved rate-reach metrics for copper, as well as faster, cheaper roll-outs. This Viewpoint examines the potential of these technologies for meeting the European Commission's Digital Agenda targets for coverage of 30Mbps and 100Mbps broadband - also known as ‘superfast' and ‘ultra-fast' broadband.

This Viewpoint provides:

  • analysis of the rate-reach of accelerated DSL technologies
  • models of local and cabinet loop topologies in real networks
  • an assessment of the potential for 30Mbps and 100Mbps coverage on copper
  • an assessment of the role of copper in delivering 50% take-up in 100Mbps service by 2020.

About the authors

Richard Linton (Consultant) has more than twenty years' experience in the telecoms industry, and has worked as a consultant with Analysys Mason for over eight years. He specialises in technical and commercial work for operators in both the fixed and mobile areas. In the fixed sector, he has worked overseas on many projects for a number of incumbent fixed-line operators. As well as undertaking research assignments, he has contributed to many strategic and operational consulting projects. Richard's main skills include cost modelling, market analysis and technical due diligence. He holds a first class honours degree in Physics and a PhD in Engineering.

Rupert Wood (Principal Analyst) is the lead analyst for Analysys Mason's Fixed Networks research programme. His primary areas of specialisation include next-generation networks, long-term industry strategy and forecasting the dynamics of convergence and substitution across fixed and mobile platforms. Rupert regularly contributes to the international press on a wide range of telecoms subjects and has been quoted by The Times, The Economist, Business Week, Telecommunications Online and Kommersant. Rupert has a PhD from the University of Cambridge, where he was a Lecturer before joining Analysys Mason.

Table of Contents

  • Executive summary
  • Recommendations
  • Legacy network architecture and accelerated DSL performance
  • Modelling potential superfast and ultra-fast coverage in the BT copper network
  • Impact of accelerated DSL on superfast and ultra-fast coverage in other copper networks
  • About the authors and Analysys Mason
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