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A Dynamic Fault-Tolerant Mesh Architecture

机译:动态容错网格架构

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A desired mesh architecture, based on connected-cycle modules, it constructed. To enhance the reliability, multiple bus sets and spare nodes are dynamicaly inserted to construct modular blocks. Two econfiguration schemes are associated, and can eliminate the spare subsitution domino effect. Simulations show that both schemes provide for increase in reliability over the interstitial redundance scheme[11] and the multi-level fault tolerance mesh(MFTM)[6], at the same redundant spare ratio. Especially, with global reconfiguration, the resliability improvement ratio per spare can be at least twice of that of the mFTM scheme. Furthemore, the lower port complexity in spare nodes as compared to those in both of the aforementioned schemes, nd versatility in reconfiguration capability are two additional merits of our proposed architecture.
机译:它构建的基于连接周期模块的期望的网格架构。为了增强可靠性,将多个总线集和备用节点插入肌肉发电机以构建模块化块。两个经济配置方案相关,可以消除备用子样本Domino效果。模拟表明,两种方案都提供了间隙冗余方案的可靠性的增加[11]和多级容错网格(MFTM)[6],以相同的冗余备用比率。特别是,随着全局重新配置,可集值改善比率可以是MFTM方案的至少两倍。 Furthemore,与两种上述方案相比,备用节点中的较低端口复杂性,重新配置能力中的ND多功能性是我们所提出的架构的两个额外优点。

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