A Resilient 2-D Waveguide Communication Fabric for Hybrid Wired-Wireless NoC Design

@article{Agyeman2017AR2,
  title={A Resilient 2-D Waveguide Communication Fabric for Hybrid Wired-Wireless NoC Design},
  author={Michael Opoku Agyeman and Quoc-Tuan Vien and Ali Ahmadinia and Alexandre Yakovlev and Kin-Fai Tong and Terrence S. T. Mak},
  journal={IEEE Transactions on Parallel and Distributed Systems},
  year={2017},
  volume={28},
  pages={359-373}
}
Hybrid wired-wireless Network-on-Chip (WiNoC) has emerged as an alternative solution to the poor scalability and performance issues of conventional wireline NoC design for future System-on-Chip (SoC). Existing feasible wireless solution for WiNoCs in the form of millimeter wave (mm-Wave) relies on free space signal radiation which has high power dissipation with high degradation rate in the signal strength per transmission distance. Moreover, over the lossy wireless medium, combining wireless… CONTINUE READING

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Key Quantitative Results

  • Even without any complex error recovery scheme, arbitration or retransmission protocol, the proposed communication fabric can improve the maximum sustainable load of existing WiNoCs and wireline NoCs by an average of 20.9% and 133.3%, respectively, with much lower average packet latency.
  • Particularly, in high contention workload such as swaptions and channeal with large number of packets simulated over a wide simulation cycle the proposed communication fabric achieves over 60% improvement in the average packet latency compared to the baseline (wireline) NoC. Fig.

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