A high-capacity, scalable video-on-demand system architecture, based on a 3-stage Clos network

F. Liotopoulos
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引用次数: 2

Abstract

We present a high performance, scalable architecture for a video on demand (VoD) system, using a three stage Clos switch. Three stage Clos switching networks have been used in the past in multiprocessor interconnection networks as well as for ATM switching fabrics due to their attractive low latency and fault tolerance properties. The proposed VoD system mainly consists of such a three stage Clos switch, which scales to 1024 OC-3 inputs and 1024 OC-3 outputs, offering more than 132 Gbps of pure switching capacity. Video data is transported through the switching network using the ATM cell format and switching protocol, connection oriented network services and fast virtual circuit switching. Routing is centrally performed by means of intelligent nearly nonblocking control algorithms, developed for Clos networks, which increase the switch utilization and significantly reduce the blocking probability at call setup. The proposed architecture can manipulate up to several Terabytes of video data and simultaneously serve 22000 to 66000 out of a total of 262144 end users. Depending on the number of middle stage switches and the control algorithm used, the blocking probability at call setup can range between zero and 5e-4.
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基于3级Clos网络的高容量、可扩展视频点播系统架构
我们提出了一种高性能、可扩展的视频点播(VoD)系统架构,使用三级Clos交换机。三级Clos交换网络由于其低延迟和容错特性,过去已被用于多处理器互连网络以及ATM交换结构。本文提出的VoD系统主要由三级Clos交换机组成,可扩展到1024个OC-3输入和1024个OC-3输出,提供超过132 Gbps的纯交换容量。视频数据通过交换网络传输,采用ATM单元格式和交换协议、面向连接的网络服务和快速虚拟电路交换。路由是通过智能近无阻塞控制算法集中执行的,该算法为Clos网络开发,提高了交换机利用率,并显著降低了呼叫建立时的阻塞概率。所提出的架构可以处理多达几tb的视频数据,并同时为总共262144个最终用户中的22000到66000个用户提供服务。根据中间级交换机的数量和所使用的控制算法,呼叫建立时的阻塞概率可以在0到5e-4之间。
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