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Reconfigurable Architecture for Minimizing the Network Delays in the Multi-core Systems

机译:可重新配置的体系结构,以最小化多核系统中的网络延迟

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摘要

Noc architecture performs better comparing to bus based when the number of processors is small. On the other hand bus based performs better than noc when number of the processors is large. This leads to new architecture which is hybrid bus based architecture where each node is packet switched in a mesh network of noc architecture that contains bus based system with small number of processors. Few results showed that this hybrid architecture performs optimally better than either purely noc based or purely bus based architecture. Hybrid architecture contains a processor connected to the bus, the bus in turn connected to the router. Each processor contains a private Level 1 (L1) cache. When hybrid architecture is preferable, the optimal number of processors on each bus subsystem varies based on the application. Hence the proposed architecture allows scalable bus-based multiprocessor subsystems on each node in the NoC. This system provides a multi-bus execution environment where each processor is connected to a bus and the bus-based subsystems communicate via routers connected in a mesh-style configuration. The system can be reconfigured to vary the number of bus subsystems and the number of processors on each subsystem. This architecture provides reliability and adaptability and reduces the network delays. Implementing and presenting the details of architecture and experimental results using ns2 indicating the advantages of this architecture.
机译:当处理器数量较少时,Noc架构与基于总线的架构相比性能更好。另一方面,当处理器数量很大时,基于总线的性能要优于noc。这导致了新的架构,该架构是基于混合总线的架构,其中每个节点在noc架构的网状网络中进行分组交换,该网状网络包含具有少量处理器的基于总线的系统。几乎没有结果表明,这种混合体系结构的性能要比单纯基于noc或单纯基于总线的体系结构最佳。混合架构包含一个连接到总线的处理器,该总线又连接到路由器。每个处理器都包含一个专用的1级(L1)缓存。当首选混合体系结构时,每个总线子系统上的处理器最佳数量会根据应用程序而变化。因此,提出的体系结构允许在NoC中的每个节点上基于可扩展的基于总线的多处理器子系统。该系统提供了一个多总线执行环境,其中每个处理器都连接到总线,并且基于总线的子系统通过以网状样式配置连接的路由器进行通信。可以将系统重新配置为更改总线子系统的数量以及每个子系统上的处理器的数量。这种架构提供了可靠性和适应性,并减少了网络延迟。使用ns2来实现和展示架构的细节以及实验结果表明了该架构的优势。

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