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PERIODICALLY REGULAR CHORDAL RINGS ARE PREFERABLE TO DOUBLE-RING NETWORKS

机译:对于双环网络,定期将其作为弦环

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The susceptibility of ring networks to disconnection as a result of one or two node/link failures has led to a number of proposals to increase the robustness of such networks. One class of proposals, discussed primarily in the networking and communication communities, but also advocated for use in parallel and distributed systems, involves the provision of a second ring to improve system throughput during normal operation and to make alternate paths available in the event of node or link failures. With regard to the advantages just listed, chordal rings are quite similar to double-ring networks, and periodically regular chordal (PRC) rings offer the added benefit of smaller node degree compared with node-symmetric chordal rings of comparable diameters. In this paper, we note that certain double-ring networks are isomorphic to suitably constructed PRC rings, while other varieties correspond to PRC rings that closely approximate their static and dynamic attributes. These results, combined with greater flexibility and other advantages for the PRC-ring family of networks, demonstrate that PRC rings are preferable to double-ring networks in virtually all application contexts. A byproduct of our observations on the relationships among double-ring networks, generalized Petersen graphs, and PRC rings is that by amalgamating known results for these network classes, many more tools and techniques become applicable to the analysis and synthesis of robust ring networks for parallel and distributed computing. As examples of new results that can be developed with this viewpoint, we present near-optimal and fault-tolerant routing algorithms for our PRC ring networks.
机译:环形网络由于一个或两个节点/链路故障而易于断开连接的问题导致了许多建议来提高此类网络的健壮性。一类建议,主要在网络和通信社区中讨论,但也建议在并行和分布式系统中使用,涉及提供第二个环以提高正常操作期间的系统吞吐量,并在出现节点时提供备用路径或链接失败。关于刚刚列出的优点,弦环与双环网络非常相似,与可比较直径的节点对称弦环相比,定期规则的弦(PRC)环具有较小的节点度的额外好处。在本文中,我们注意到某些双环网络对于适当构建的PRC环是同构的,而其他品种对应于PRC环,它们的静态和动态属性非常接近。这些结果,加上PRC-ring系列网络的更大灵活性和其他优势,表明在几乎所有应用程序环境中,PRC环比双环网络更可取。我们对双环网络,广义Petersen图和PRC环之间关系的观察的副产品是,通过将这些网络类别的已知结果融合在一起,更多的工具和技术可用于分析和综合鲁棒环网络以进行并行和分布式计算。作为可以用这种观点开发的新结果的示例,我们为我们的PRC环网提出了近乎最优且容错的路由算法。

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