Microring fault-resilient photonic network-on-chip for reliable high-performance many-core systems

Michael Meyer*, Yuichi Okuyama, Abderazek Ben Abdallah

*この研究の対応する著者

研究成果: Article査読

7 被引用数 (Scopus)

抄録

Photonic networks-on-chip (PNoCs) have emerged as a promising alternative to the conventional metal-based networks-on-chip due to their advantages in bandwidth density, power efficiency and propagation speed. Existing works on PNoCs concentrate on architectures of photonic networks with the assumption that the underlying photonic infrastructure operates correctly and reliably. However, the key optical device in PNoC systems, microring resonators (MRs), is very sensitive to temperature fluctuation and manufacturing errors. A single MR failure can cause messages to be misdelivered or lost, which results in bandwidth loss or even complete failure of the whole system. In this paper, we present a fault-tolerant Photonic Network-on-Chip architecture, named FT-PHENIC, which uses minimal redundancy to ensure accuracy of packet transmission even after faulty microring resonators (MRs) are detected. FT-PHENIC is based on a microring fault-resilient photonic router (FTTDOR) and an adaptive path-configuration and routing algorithm. Simulation results show that FT-PHENIC tolerates MR faults quite well up until around when 20 % of the MRs have failed, and has minimal bandwidth degradation and power drawbacks.

本文言語English
ページ(範囲)1567-1599
ページ数33
ジャーナルJournal of Supercomputing
73
4
DOI
出版ステータスPublished - 2017 4月 1
外部発表はい

ASJC Scopus subject areas

  • ソフトウェア
  • 理論的コンピュータサイエンス
  • 情報システム
  • ハードウェアとアーキテクチャ

フィンガープリント

「Microring fault-resilient photonic network-on-chip for reliable high-performance many-core systems」の研究トピックを掘り下げます。これらがまとまってユニークなフィンガープリントを構成します。

引用スタイル