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Adaptive Fault-Tolerant Routing in 2D Mesh with Cracky Rectangular Model

机译:带有裂纹矩形模型的二维网格中的自适应容错路由

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This paper mainly focuses on routing in two-dimensional mesh networks.We propose a novel faulty block model, which is cracky rectangular block, for fault-tolerant adaptive routing. All the faulty nodes and faulty links are surrounded in this type of block, which is a convex structure, in order to avoid routing livelock. Additionally, the model constructs the interior spanning forest for each block in order to keep in touch with the nodes inside of each block. The procedure for block construction is dynamically and totally distributed.The construction algorithm is simple and ease of implementation. And this is a fully adaptive block which will dynamically adjust its scale in accordance with the situation of networks, either the fault emergence or the fault recovery, without shutdown of the system. Based on this model, we also develop a distributed fault-tolerant routing algorithm. Then we give the formal proof for this algorithm to guarantee that messages will always reach their destinations if and only if the destination nodes keep connecting with these mesh networks. So the new model and routing algorithm maximize the availability of the nodes in networks.This is a noticeable overall improvement of fault tolerability of the system.
机译:本文主要针对二维网格网络中的路由。针对容错自适应路由,提出了一种新颖的故障块模型,即裂纹矩形块。所有有故障的节点和有故障的链接都被包围在这种凸块结构的块中,以避免路由活锁。此外,该模型为每个块构造内部生成林,以便与每个块内部的节点保持联系。块的构建过程是动态且完全分布的。构建算法简单易实现。这是一个完全自适应的模块,它将根据网络情况动态调整其规模,无论是出现故障还是恢复故障,而无需关闭系统。基于此模型,我们还开发了一种分布式容错路由算法。然后,我们为该算法提供形式证明,以确保仅当目标节点保持与这些网状网络连接时,消息才会始终到达其目标。因此,新的模型和路由算法可以最大程度地提高网络中节点的可用性。这是系统容错能力的明显改善。

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