Welcome to the new version of CaltechAUTHORS. Login is currently restricted to library staff. If you notice any issues, please email coda@library.caltech.edu
Published October 2018 | Submitted
Journal Article Open

RCFD: A Novel Channel Access Scheme for Full-Duplex Wireless Networks Based on Contention in Time and Frequency Domains

Abstract

In the last years, the advancements in signal processing and integrated circuits technology allowed several research groups to develop working prototypes of in–band full–duplex wireless systems. The introduction of such a revolutionary concept is promising in terms of increasing network performance, but at the same time poses several new challenges, especially at the MAC layer. Consequently, innovative channel access strategies are needed to exploit the opportunities provided by full–duplex while dealing with the increased complexity derived from its adoption. In this direction, this paper proposes RTS/CTS in the Frequency Domain (RCFD), a MAC layer scheme for full–duplex ad hoc wireless networks, based on the idea of time–frequency channel contention. According to this approach, different OFDM subcarriers are used to coordinate how nodes access the shared medium. The proposed scheme leads to efficient transmission scheduling with the result of avoiding collisions and exploiting full–duplex opportunities. The considerable performance improvements with respect to standard and state–of–the–art MAC protocols for wireless networks are highlighted through both theoretical analysis and network simulations.

Additional Information

© 2018 IEEE. Manuscript received 11 May 2017; revised 26 Nov. 2017; accepted 9 Jan. 2018. Date of publication 23 Jan. 2018; date of current version 29 Aug. 2018. Part of this work was presented at the 2016 IEEE International Conference of Communications (ICC).

Attached Files

Submitted - 1606.01038.pdf

Files

1606.01038.pdf
Files (343.7 kB)
Name Size Download all
md5:476c8d47f4c4fe86c6fc6e7ab01bbab3
343.7 kB Preview Download

Additional details

Created:
August 19, 2023
Modified:
October 18, 2023