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Multicast ABR to Keep Cable IP Video Streams Flowing

出版商 Heavy Reading 商品編碼 370250
出版日期 內容資訊 英文 16 Pages
商品交期: 最快1-2個工作天內
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多播ABR的電纜取向IP影音串流 Multicast ABR to Keep Cable IP Video Streams Flowing
出版日期: 2016年08月31日 內容資訊: 英文 16 Pages

多播ABR (M-ABR)的整體目標是維持IP-based視訊服務的服務品質 (QoS) 。

本報告提供電纜取向多播ABR (M-ABR) 調查分析,ABR的優點,實行,支援技術,主要課題等系統性資訊。

第1章 摘要整理

第2章 電纜取向IP視訊概要

  • 背景
  • ABR的基本

第3章 多播ABR技術

  • M-ABR的優點
  • 多播 vs. 單播
  • M-ABR的實行
  • 頻寬管理
  • 通用平台
  • 支援技術
  • 智慧網路資料分析
  • 主要課題

第4章 供應商的解決方案

第5章 結論:微妙的平衡



As cable seeks to take greater advantage of broadband video, it faces a sizeable challenge. Not only does cable have to keep pace with the soaring consumption of video on tablets, smartphones, smart TVs, laptops and game players, but it eventually needs to migrate its linear television channels to Internet protocol (IP) delivery processes and formats.

Cable's digital video services were built upon quadrature amplitude modulation (QAM) technology that is enormously successful in delivering hundreds of linear channels, HDTV and video on demand (VoD) to set-top boxes (STBs). Cable's increasing broadband capabilities give providers the opportunity to deliver all video content, including VoD, linear and over the top (OTT), using IP, with the promise of greater efficiency and lower cost.

Recently the industry has been focusing on ways to use adaptive bit rate (ABR) and marry it with multicast delivery of linear channels. IP multicast is efficient because providers do not have to provide duplicate copies of video for viewing by many viewers. Adaptive streaming, based on hypertext transfer protocol (HTTP) and established by major computer companies, offers network resiliency. The overall aim of multicast ABR (M-ABR) is to maintain quality of service (QoS) across IP-based video services, avoid latency as viewers change channels and optimize performance throughout video delivery.

ABR is one part of industry efforts to create a smarter network that runs more efficiently, optimizes performance and ensures a high quality of experience. Big data analytics and predictive modeling are being applied to better anticipate when and where video content needs to travel.

Multicast ABR promises to be of particular benefit to Comcast, which is out front in migrating to all-IP delivery and conducting trials of M-ABR. Several major MSOs, including Charter Communications (via its Time Warner Cable acquisition), Cablevision Systems (now under Altice USA) and Cox Communications, implemented switched digital video (SDV) architecture, which buys them more time to use a mix of QAM, multicast and unicast delivery.

The exploration and debate over the right balance of M-ABR, unicast and QAM will continue for some time. MSOs may arrive at different answers depending on their architectures and other factors. The sharing of information and trial results that occurred at INTX 2016 was a positive step toward helping all players to develop their best delivery options.

Whatever path providers take, the most important factor is that cable delivers a high-quality video viewing experience. When it comes to subscription television, cable cannot afford to deliver TV channels that display the same types of video issues that often plague online video. The stakes will grow higher as 4K UHD, HDR or other video innovations gain wider distribution.

In addition to cable's all-IP migration, M-ABR ties into other important trends in the industry. Cable providers are embracing the concept of the smart network, infused by big data to manage traffic, optimize performance and support quality of experience. It's another sign of cable seeking to shake off its legacy past and take advantage of leading-edge technologies.

‘Multicast ABR to Keep Cable IP Video Streams Flowing’ explores multicast ABR for cable, including its benefits, implementation, supporting technologies and key challenges. Included is a Supplier Comparison chart of technology companies that support M-ABR and provide products and solutions for IP video delivery by U.S. cable service providers and content providers.

The following excerpt, a schematic by CableLabs, shows a simplified version of an M-ABR system. In this model, multicast video is transported to a gateway and then delivered via unicast to individual IP STBs and connected devices, or what some in cable refer to as a COAM (pronounced co-am): customer owned and managed device.

‘Multicast ABR to Keep Cable IP Video Streams Flowing’ is published in PDF format.

Table of Contents


  • 1.1. Key Findings


  • 2.1. Background
  • 2.2. ABR Basics


  • 3.1. M-ABR Benefits
  • 3.2. Multicast vs. Unicast
  • 3.3. M-ABR Implementation
  • 3.4. Bandwidth Management
  • 3.5. Common Platforms
  • 3.6. Supporting Technologies
  • 3.7. Data Analytics for Smart Networks
  • 3.8. Key Challenges




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