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A Class of Fiber-Ribbon Pipeline Ring Networks for Parallel and Distributed Computing Systems

机译:一类用于并行和分布式计算系统的光纤带状环形网络

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摘要

In this paper, three ring networks made up of fiber-ribbon point-to-point links are presented. The first network is a control-channel based network in which one fiber in each link joins with others to form a control-channel ring. This ring improves performance of the network by sending medium access control information immediately before the data transmissions. High throughputs can be achieved in the network due to pipelining, i.e., several packets can be traveling through the network simultaneously but in different segments of the ring. Also, real-time demands can be met using slot reserving. The network, called CC-FPR (Control-Channel based Fiber-ribbon Pipeline Ring), can be built today using off-the-shelf fiber-optic components. The increasingly good price/performance ratio for fiber-ribbon links indicates a high potential for the success of the proposed kind of networks. The second network is similar to the first one except that it divides the network into two sub-networks, one for packet switched traffic and one for circuit -switched traffic. When the main data flow in the network does not change rapidly, this is a good choice of a simple but powerful network. In the third network, the medium access protocol of the first network is exchanged with a one with global deadline scheduling to support best-effort real-time traffic.
机译:在本文中,提出了由光纤带点对点链路组成的三个环网。第一个网络是基于控制信道的网络,其中每个链路中的一个光纤与其他链路相连,形成一个控制信道环。通过在数据传输之前立即发送媒体访问控制信息,此环可提高网络性能。由于流水线化,可以在网络中实现高吞吐量,即,几个数据包可以同时在网络中但在环的不同段中传播。同样,使用时隙预留可以满足实时需求。该网络称为CC-FPR(基于控制通道的光纤带状管道环网),现在可以使用现成的光纤组件来构建。光纤带链路的性价比越来越高,表明所提出的网络具有很大的成功潜力。第二个网络与第一个网络类似,不同之处在于它将网络划分为两个子网,一个用于分组交换流量,另一个用于电路交换流量。当网络中的主要数据流没有快速变化时,这是简单但功能强大的网络的不错选择。在第三网络中,第一网络的媒体访问协议与具有全局截止日程安排的网络交换以支持尽力而为的实时流量。

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