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A flexible network architecture for data multicasting in 'multiservice networks'

机译:灵活的网络体系结构,用于“多服务网络”中的数据多播

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The paper describes a canonical model of data-transport architecture that offers a flexible framework for implementations of data multicasting on backbone networks to support multiservice applications (e.g., videoconferencing, digital TV broadcast). The architecture is based on acyclic graph structured communication channels that provide connectivity among data sources and destinations through switches and links in a backbone network. The paper adopts a network-wide logical addressing of communication channels, which allows data multicasting to be realized on specific backbone networks by establishing local bindings between a logical address and the information on network-specific routing of data over switches and links. The approach allows various sources to share the switches and links in a multicast path connecting to destinations. This is a desirable feature in view of the significant reduction in network routing control costs and data transfer costs when dealing with high-volume multisource data (say, in videoconferencing). In addition, logical addressing allows grouping of selected destinations to overlay different "virtual networks" on a base-level multicast channel (e.g., private discussion groups in a conference). As a demonstration of architectural flexibility, the paper describes the embedding of our multicast model on sample backbone networks capable of supporting multiservice applications: interconnected LANs, ATM networks, and high-speed public data networks (viz., SMDS networks).
机译:该文件描述了一种数据传输体系结构的规范模型,该模型为在骨干网络上实现数据多播提供了灵活的框架,以支持多服务应用程序(例如,视频会议,数字电视广播)。该体系结构基于非循环图结构的通信通道,该通道通过骨干网中的交换机和链路在数据源和目的地之间提供连接。本文采用了通信通道的全网逻辑寻址,通过在逻辑地址与交换机和链路上的数据特定于网络的路由信息​​之间建立本地绑定,从而允许在特定的骨干网上实现数据多播。该方法允许各种源共享连接到目的地的多播路径中的交换机和链接。考虑到在处理大量多源数据时(例如,在视频会议中),网络路由控制成本和数据传输成本显着降低,因此这是理想的功能。另外,逻辑编址允许对选定目的地进行分组以在基本级多播信道(例如,会议中的私人讨论组)上覆盖不同的“虚拟网络”。为了说明体系结构的灵活性,本文描述了将多播模型嵌入能够支持多服务应用程序的示例骨干网中的情况:互连的LAN,ATM网络和高速公共数据网络(即SMDS网络)。

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