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Combining SDM-Based Circuit Switching with Packet Switching in a Router for On-Chip Networks

机译:片上网络的路由器中将基于SDM的电路交换与分组交换相结合

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A Hybrid router architecture for Networks-on-Chip "NoC" is presented, it combines Spatial Division Multiplexing "SDM" based circuit switching and packet switching in order to efficiently and separately handle both streaming and best-effort traffic generated in real-time applications. Furthermore the SDM technique is combined with Time Division Multiplexing "TDM" technique in the circuit switching part in order to increase path diversity, thus improving throughput while sharing communication resources among multiple connections. Combining these two techniques allows mitigating the poor resource usage inherent to circuit switching. In this way Quality of Service "QoS" is easily provided for the streaming traffic through the circuit-switched sub-router while the packet-switched sub-router handles best-effort traffic. The proposed hybrid router architectures were synthesized, placed and routed on an FPGA. Results show that a practicable Network-on-Chip "NoC" can be built using the proposed router architectures. 7×7 mesh NoCs were simulated in SystemC. Simulation results show that the probability of establishing paths through the NoC increases with the number of sub-channels and has its highest value when combining SDM with TDM, thereby significantly reducing contention in the NoC.
机译:提出了一种用于片上网络“ NoC”的混合路由器体系结构,该体系结构结合了基于空分复用“ SDM”的电路交换和数据包交换,以便高效,独立地处理实时应用中生成的流和尽力而为流量。此外,在电路交换部分中,SDM技术与时分复用“ TDM”技术相结合,以增加路径分集,从而提高吞吐量,同时在多个连接之间共享通信资源。结合这两种技术可以减轻电路交换所固有的不良资源使用。这样,通过分组交换子路由器处理尽力而为流量时,通过电路交换子路由器的流业务就可以轻松地提供服务质量“ QoS”。拟议的混合路由器体系结构在FPGA上进行了综合,放置和路由。结果表明,使用建议的路由器体系结构可以构建可行的片上网络“ NoC”。在SystemC中模拟了7×7网格NoC。仿真结果表明,通过NoC建立路径的可能性随子信道数量的增加而增加,并且在将SDM与TDM结合使用时具有最高的值,从而显着减少了NoC中的竞争。

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  • 来源
    《International journal of reconfigurable computing》 |2012年第2012期|474765.1-474765.16|共16页
  • 作者单位

    Institute of Information and Communication Technologies, Electronics and Applied Mathematics, Universite Catholique de Louvain, 1348 Louvain-la-Neuve, Belgium;

    Institute of Information and Communication Technologies, Electronics and Applied Mathematics, Universite Catholique de Louvain, 1348 Louvain-la-Neuve, Belgium;

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