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Analytical modeling and comparison of fault-tolerant message flow control mechanisms in torus-connected networks

机译:环形连接网络中容错消息流控制机制的分析建模和比较

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In many environments, rather than minimizing message latency or maximizing network performance, the ability to survive beyond the failure of individual network components is the main issue of interests. The nature of Wormhole Switching (WS) leads to high network throughput and low message latencies. However, in the vicinity of faulty regions, these behaviors cause rapid congestion, provoking the network becomes deadlocked. While techniques such as adaptive routing can alleviate the problem, they cannot completely solve the problem. Thus, there have been extreme studies on other types of switching mechanisms in networking and multi-computers communities. In this paper, we present a general mathematical model to assess the relative performance merits of three well-known fault-tolerant switching methods in tori, namely Scouting Switching (SS), Pipelined Circuit Switching (PCS), and Circuit Switching (CS). We have carried out extensive simulation experiments, the results of which are used to validate the proposed analytical models. We have also conducted an extensive comparative performance analysis, by means of analytical modeling, of SS, PCS, and CS under various working conditions. The analytical results reveal that SS shows substantial performance improvements for low to moderate failure rates over PCS and CS, which achieves close to WS performance. PCS can provide superior performance over CS and behaves the same or in some occasions worse than SS, under light and moderate traffic, especially with the same hardware requirements.
机译:在许多环境中,要使生存能力超越单个网络组件的故障,而不是最小化消息等待时间或最大化网络性能,才是人们关注的主要问题。蠕虫交换(WS)的性质导致较高的网络吞吐量和较低的消息延迟。但是,在故障区域附近,这些行为会导致快速拥塞,从而使网络陷入僵局。尽管诸如自适应路由之类的技术可以缓解问题,但它们不能完全解决问题。因此,已经对网络和多计算机社区中的其他类型的交换机制进行了深入研究。在本文中,我们提供了一个通用的数学模型,以评估三种已知的Tori容错切换方法(侦察切换(SS),流水线电路切换(PCS)和电路切换(CS))的相对性能优劣。我们进行了广泛的模拟实验,其结果用于验证所提出的分析模型。我们还通过分析建模对各种工作条件下的SS,PCS和CS进行了广泛的比较性能分析。分析结果表明,与PCS和CS相比,SS的中低故障率显示出显着的性能改进,可达到与WS性能接近的性能。 PCS可以提供​​比CS更好的性能,并且在轻量和中等流量下,尤其是在具有相同硬件要求的情况下,其性能与SS相同或在某些情况下比SS差。

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