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Planar adaptive fault-tolerant routing in PRDT(2,1)-based NoCs

机译:基于PRDT(2,1)的NoC中的平面自适应容错路由

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PRDT(2,1) is a promising architecture for NoCs because of its layout efficiency, good electrical properties and simplicity in addressing on-chip resources. It is essential to provide a fault-tolerant algorithm for the design of PRDT(2,1)-based NoCs. In this paper, we present a new fault tolerant routing algorithm based on the planar adaptive routing scheme. The proposed fault tolerant algorithm routes messages around fault region with a simple scheme of virtual network theorem. A proof is provided that the proposed routing algorithm is always connected and deadlock-free in spit of the variety of fault components in PRDT(2,1). Since the presented fault-tolerant routing scheme only employs as few virtual channels as possible, it leads to a good performance and a reduction of the area and power of NoC systems.
机译:PRDT(2,1)是NoC的有前途的架构,因为它的版图效率高,良好的电气特性以及处理片上资源的简便性。为基于PRDT(2,1)的NoC设计提供容错算法至关重要。在本文中,我们提出了一种新的基于平面自适应路由方案的容错路由算法。提出的容错算法使用虚拟网络定理的简单方案在故障区域附近路由消息。提供的证据表明,所提出的路由算法在PRDT(2,1)中的各种故障组件中始终保持连接且无死锁。由于所提出的容错路由方案仅使用了尽可能少的虚拟通道,因此可以带来良好的性能,并减少NoC系统的面积和功耗。

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