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Self-healing router architecture for reliable network-on-chips

机译:具有自我修复功能的路由器架构,可实现可靠的片上网络

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NoCs are a well established research topic and several Implementations have been proposed for Self-healing. Self-healing refers to the ability of a system to detect faults or failures and fix them through healing or repairing. The main problems in current self-healing approaches are area overhead and scalability for complex structure since they are based on redundancy and spare blocks. Also, faulty router can isolate PE from other router nodes which can reduce the overall performance of the system. This paper presents a self-healing for a router to avoid denied fault PE function and isolation PE from other nodes. In the proposed design, the neighbor routers receive signal from a faulty router which keeps them to send the data packet which has only faulted router destination to a faulty router. Control unite turns on switches to connect four input ports to local ports successively to send coming packets to PE. The reliability of the proposed technique is studied and compared to conventional system with different failure rates. This approach is capable of healing 50% of the router. The area overhead is 14% for the proposed approach which is much lower compared to other approaches using redundancy.
机译:NoC是一个公认的研究主题,并且已经提出了几种自我修复的实现方法。自我修复是指系统检测故障或失败并通过修复或修复对其进行修复的能力。当前的自我修复方法的主要问题是区域开销和复杂结构的可伸缩性,因为它们基于冗余和备用块。同样,有故障的路由器可能会将PE与其他路由器节点隔离,从而降低系统的整体性能。本文提出了一种路由器的自我修复功能,可避免出现故障PE功能被拒绝以及将PE与其他节点隔离的情况。在提出的设计中,邻居路由器从有故障的路由器接收信号,使它们继续将只有有故障的路由器目标的数据包发送到有故障的路由器。控制单元打开交换机,依次将四个输入端口连接到本地端口,以将即将到来的数据包发送到PE。研究了所提出技术的可靠性,并将其与具有不同故障率的常规系统进行了比较。这种方法能够修复路由器的50%。对于所提出的方法,区域开销为14%,与使用冗余的其他方法相比要低得多。

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