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Multi-carrier spread-spectrum transceiver for WiNoC

Published: 17 October 2019 Publication History
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  • Abstract

    In this paper, we propose a low-power, high-speed, multi-carrier reconfigurable transceiver based on Frequency Division Multiplexing to ensure data transfer in future Wireless NoCs. The proposed transceiver supports a medium access control method to sustain unicast, broadcast and multicast communication patterns, providing dynamic data exchange among wireless nodes. The proposed transceiver designed using a 28-nm FDSOI technology consumes only 2.37 mW and 4.82 mW in unicast/broadcast and multicast modes, respectively, with an area footprint of 0.0138 mm2.

    References

    [1]
    K. Duraisamy, Y. Xue, et al. Multicast-aware high-performance wireless network-on-chip architectures. IEEE Trans. on VLSI Systems, 25(3):1126--1139, 2017.
    [2]
    J. Fakatselis and M. Belkerdid. Processing gain for direct sequence spread spectrum communication systems and prism®. Appli. Note AN9633, Intersil, four pages, 1996.
    [3]
    H. Hsieh, P. Wu, C. Jou, F. Hsueh, and G. Huang. 60ghz high-gain low-noise amplifiers with a common-gate inductive feedback in 65nm cmos. In IEEE Radio Freq. Integ. Circ. Sympo., pages 1--4, 2011.
    [4]
    I. E. Masri et al. Accurate channel models for realistic design space exploration of future wireless nocs. In IEEE/ACM Inter. Symp. on (NOCS), pages 1--8, 2018.
    [5]
    J. O. Sosa et al. A Diversity Scheme to Enhance the Reliability of Wireless NoC in Multipath Channel Environment. In Int. Symp. on NOCS, pages 1--8, 2018.
    [6]
    X. Yu et al. A 1.2-pJ/bit 16-Gb/s 60-GHz OOK Transmitter in 65-nm CMOS for Wireless Network-On-Chip. IEEE Trans. on MTT, 62(10):2357--2369, 2014.

    Cited By

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    • (2023)Analytical Model for Performance Evaluation of Token-Passing-Based WiNoCsIEEE Design & Test10.1109/MDAT.2023.330973040:6(136-148)Online publication date: Dec-2023

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    Published In

    cover image ACM Conferences
    NOCS '19: Proceedings of the 13th IEEE/ACM International Symposium on Networks-on-Chip
    October 2019
    161 pages
    ISBN:9781450367004
    DOI:10.1145/3313231
    Permission to make digital or hard copies of part or all of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for third-party components of this work must be honored. For all other uses, contact the Owner/Author.

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    • IEEE Circuits and Systems Society
    • IEEE-CEDA

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    Association for Computing Machinery

    New York, NY, United States

    Publication History

    Published: 17 October 2019

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    Author Tags

    1. WiNoC channel
    2. communication reliability
    3. digital transceiver architecture
    4. wireless network-on-chip

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    • Poster

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    NOCS '19
    NOCS '19: International Symposium on Networks-on-Chip
    October 17 - 18, 2019
    New York, New York

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    Overall Acceptance Rate 14 of 44 submissions, 32%

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    • (2023)Analytical Model for Performance Evaluation of Token-Passing-Based WiNoCsIEEE Design & Test10.1109/MDAT.2023.330973040:6(136-148)Online publication date: Dec-2023

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