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Cites:

Information Journal Paper

Title

Four-port non-blocking switch for reducing insertion loss in hybrid photonic networks-on-chip

Pages

  1193-1204

Abstract

 A multi-processor architecture was proposed to address power consumption limitations in chips in order to increase performance and lower power consumption. In this architecture, the highest power consumption comes from the chip connections. Optical connections can reduce power consumption and increase performance via a new architecture called Photonic network-on-chips, which are capable of utilizing the benefits of optical signals and elements for data transfer. This paper proposes a 4×4, non-blocking photonic switch to improve physical layer parameters by increasing photonic network performance. The insertion loss and energy dissipation of the proposed switch were compared to three switches: Original, StraightPath, and Symmetric switches. The results indicated that, in a mesh topology, the proposed switch reduced loss for the GTC, Cactus, Tornado, and MADbench by 28. 22, 24. 46, 28. 72, and 29. 20%, respectively, when compared to the Original switch. According to PhoenixSim simulation results, the proposed switch reduced insertion loss and energy dissipation in Photonic network-on-chips when compared to the three comparison switches.

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  • Cite

    APA: Copy

    Khoroush, Somayeh, RESHADI, MIDIA, KHADEMZADEH, AHMAD, & Reza, Akram. (2020). Four-port non-blocking switch for reducing insertion loss in hybrid photonic networks-on-chip. TABRIZ JOURNAL OF ELECTRICAL ENGINEERING, 50(3 (93) ), 1193-1204. SID. https://sid.ir/paper/966535/en

    Vancouver: Copy

    Khoroush Somayeh, RESHADI MIDIA, KHADEMZADEH AHMAD, Reza Akram. Four-port non-blocking switch for reducing insertion loss in hybrid photonic networks-on-chip. TABRIZ JOURNAL OF ELECTRICAL ENGINEERING[Internet]. 2020;50(3 (93) ):1193-1204. Available from: https://sid.ir/paper/966535/en

    IEEE: Copy

    Somayeh Khoroush, MIDIA RESHADI, AHMAD KHADEMZADEH, and Akram Reza, “Four-port non-blocking switch for reducing insertion loss in hybrid photonic networks-on-chip,” TABRIZ JOURNAL OF ELECTRICAL ENGINEERING, vol. 50, no. 3 (93) , pp. 1193–1204, 2020, [Online]. Available: https://sid.ir/paper/966535/en

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