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A hybrid packet-circuit switched on-chip network based on SDM

机译:基于SDM的混合分组电路交换片上网络

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In this paper, we propose a novel on-chip communication scheme by dividing the resources of a traditional packet-switched network-on-chip between a packet-switched and a circuit-switched sub-network. The former directs packets according to the traditional packet-switching mechanism, while the latter forwards packets over circuits which are directly established between two non-adjacent nodes by bypassing the intermediate routers. A packet may switch between the sub-networks several times to reach its destination. The circuits are set up using a low-latency and low-cost setup-network. The network resources are split between the two sub-networks using Spatial-Division Multiplexing (SDM). The work aims to improve the power and performance metrics of Network-on-Chip (NoC) architectures and benefits from the power and scalability advantage of packet-switched NoCs and superior communication performance of circuit-switching. The evaluation results show a significant reduction in power and latency over a traditional packet-switched NoC.
机译:在本文中,我们通过在分组交换和电路交换子网之间划分传统的分组交换片上网络资源来提出一种新颖的片上通信方案。前者根据传统的分组交换机制引导数据包,而后者则通过绕过中间路由器直接在两个不相邻节点之间建立的电路上转发数据包。数据包可能会在子网之间多次切换以到达其目的地。使用低延迟和低成本的建立网络来建立电路。使用空分复用(SDM)在两个子网之间分配网络资源。这项工作旨在改善片上网络(NoC)架构的功率和性能指标,并从分组交换NoC的功率和可伸缩性优势以及电路交换的出色通信性能中受益。评估结果表明,与传统的分组交换NoC相比,功耗和等待时间显着减少。

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