采用动态可重构技术的高可靠性网络系统架构

Yuji Shinozaki, M. Katayama, Hiroki Yamada
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引用次数: 0

摘要

网络可靠性包括节点和链路的可靠性。本文主要研究节点可靠性问题。节点采用可重构技术来改进其功能。该技术可以使功能的配置数据易于更改,从而带来灵活性。利用该特性,该技术应用于高速网络接口上提供高速报文处理(如报文分类)的网络节点。本文介绍了重构技术在提高分组处理节点可靠性方面的应用。传统的冗余方法需要增加备用板的数量来提高系统的可靠性,因此在获得高可靠性的同时需要付出较高的设备成本。为了解决这个问题,我们提出了双向共享串行N + k冗余作为一种新的冗余方法。这样可以减少所需的备用单板数量,并增加单板故障的恢复模式。通过对系统可靠性的评估,表明该方法比传统方法能更好地提高设备的可靠性。因此,该方法可以通过可重构技术实现高可靠性和节点小型化,从而提高网络的可靠性。
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High-reliability network system architecture using dynamic reconfigurable technology
Network reliability consists of the reliability of nodes and links. This paper focuses on node reliability. Nodes have applied reconfigurable technology to improve their functions. This technology can bring flexibility by making the configuration data of a function easy to change. Using this feature, this technology is applied to network nodes that provide high-speed packet-processing such as packet classification on a high-speed network interface. This paper describes the application of reconfiguration technology to enhance the reliability of packet processing nodes. The conventional redundant method requires an increase in the number of spare boards to raise system reliability, so it has a high equipment cost in exchange for high reliability. To solve this problem, we propose bidirectional shared serial N + k redundancy as a new redundant method. This can reduce the number of spare boards required and increase the recovery patterns for board failure. By evaluating system reliability, we show that our method can enhance the reliability of equipment better than the conventional method. Thus, this proposed method can attain high reliability and node miniaturization by means of reconfigurable technology and will lead to better network reliability.
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