在光纤/电缆系统上有效传输数据的协议

D. Sala, J. Limb
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引用次数: 36

摘要

信息、通信和教育服务的范围和范围正在发生一场革命,这些服务将提供给学校、图书馆、市政厅、诊所,最重要的是,提供给住宅。这些服务最初将主要由电话公司或电缆公司通过混合光纤电缆系统提供。旧电缆厂正在升级,并以全新的方式使用。上游信道的拓扑结构和物理特性对有效的信道接入提出了新的挑战。我们提出了一种媒体访问协议,可以有效地在该信道上传输数据。设计的一个主要目标是保持协议驻留在车站的部分尽可能简单。因此,我们采用位于电缆前端的集中控制,最大限度地降低了站内的智能化。我们将此协议称为集中优先保留或CPR。希望传输的站使用争用信道向前端发送请求。头端确认请求,然后调度请求,通过授权消息的方式通知站点何时传输。该协议在高负载下性能良好。工作站的数量、系统的速度和系统的物理长度对性能的影响很小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A protocol for efficient transfer of data over fiber/cable systems
A revolution is occurring in the scope and range of information, communication and education services that will be made available to schools, libraries, town-halls, clinics and, most importantly, residences. These services will be provided initially, primarily over hybrid fiber-cable systems, either by telephone companies or cable companies. The old cable plant is being upgraded and used in totally new ways. The topology and physical characteristics of the upstream channel present new challenges for efficient channel access. We present a media access protocol that efficiently transfers data on this channel. A primary goal in the design was to keep the portion of the protocol resident in the station as simple as possible. Thus we use centralized control located in the cable head-end and minimize intelligence in the station. We refer to this protocol as centralized priority reservation or CPR. A station wishing to transmit sends a request to the head-end using a contention channel. The head-end acknowledges the request and then schedules the request, informing the station by means of a grant message when to transmit. The protocol performs well under heavy load. Performance is affected little by the number of stations, the speed of the system and the physical length of the system.
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