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首页> 外文期刊>WSEAS Transactions on Computers >A Fully Adaptive Three-Phase Fault-Tolerant Protocol for Direct Multiprocessors Networks
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A Fully Adaptive Three-Phase Fault-Tolerant Protocol for Direct Multiprocessors Networks

机译:直接多处理器网络的完全自适应三相容错协议

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摘要

This paper investigates the fault tolerance problem in direct networks. Conservative flow control mechanisms such as Pipelined Circuit Switching (PCS) ensure the existence of a path to the destination before transmission. This ensures achieving reliable fault-tolerant system on the expense of performance. Optimistic flow control mechanisms such as Wormhole Switching (WS) realize very good performance, but they are very sensitive to the existence of deadlock of the presence of faults. This paper presents a new adaptive fault tolerant protocol in wormhole switched networks. In the fault free region, messages use WS for routing. However, when messages encounter faults, some restrictions are used with controlled buffering of the message in the node's local memory to ensure deadlock free fault-tolerance routing. The router and virtual channel models are simplified. Distributed random faulty nodes can be fully handled. A fully adaptive three phase protocol is proposed and compared via simulation to the two phase (TP) protocol. The results show that the algorithm achieves higher throughput at different injection rates and lower latency over a wide range of injection rates.
机译:本文研究了直接网络中的容错问题。保守的流控制机制(例如流水线电路交换(PCS))可确保在传输之前存在到目的地的路径。这确保以性能为代价实现可靠的容错系统。诸如虫洞切换(WS)之类的乐观流控制机制实现了非常好的性能,但是它们对故障存在的死锁的存在非常敏感。本文提出了一种新的蠕虫交换网络自适应容错协议。在无故障区域中,消息使用WS进行路由。但是,当消息遇到故障时,在节点的本地内存中对消息进行受控缓冲会使用一些限制,以确保无死锁的容错路由。路由器和虚拟通道模型得到简化。分布式随机故障节点可以得到充分处理。提出了一种完全自适应的三相协议,并通过仿真将其与两相(TP)协议进行了比较。结果表明,该算法在不同的注入速率下实现了更高的吞吐量,并在较宽的注入速率范围内实现了较低的延迟。

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