具有透明资源分配的容错NoC路由器

Tsotne Putkaradze, Siavoosh Payandeh Azad, Behrad Niazmand, J. Raik, G. Jervan
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引用次数: 3

摘要

当前,技术的迅猛扩张导致了系统可靠性的下降。这激发了对提供系统功能优雅降级的故障弹性架构的研究。本文提出了三种新的故障弹性片上网络(NoC)路由器架构。这些架构利用路由器的规律性,重新分配可用的现有和备用单元,以保持某些转弯的功能。资源重新分配由系统的资源管理器透明地执行,并基于预定义的优先级。提出了一种新的基于可靠性方框图的结构可靠性比较度量。与硅酮保护系数(SPF)度量相比,拟议的度量还考虑了不同单位的面积。将所提架构的面积开销和可靠性与三模冗余(TMR)和单元重复机制进行了比较。与原始体系结构、TMR体系结构和Unit Duplication体系结构相比,所有提出的体系结构的可靠性都有显著提高;同时,它们的面积开销小于或等于单元复制机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault-resilient NoC router with transparent resource allocation
The current trend of aggressive technology scaling results in a decrease in system's reliability. This motivates investigation of fault-resilient architectures which provide graceful degradation of system's functionality. In this paper, three novel fault-resilient Network-on-Chip (NoC) router architectures are proposed. These architectures, exploit the regularity of the router and reallocate available existing and spare units to maintain functionality of certain turns. The resource reallocation is performed transparently from system's resource manager and is based on predefined priorities. A new metric for architecture reliability comparison based on reliability block diagrams is introduced. In contrast to Silicone Protection Factor (SPF) metric, the proposed metric also takes into account the areas of different units. Area overhead and reliability of proposed architectures are compared with Triple Modular Redundancy (TMR) and Unit-Duplication mechanisms. All proposed architectures showed remarkable reliability improvement compared to original, TMR and Unit Duplication architectures; while at the same time, their area overhead is less than or equal to unit-duplication mechanisms.
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