DMT of parallel-path and layered networks under the half-duplex constraint

Sreeram, K. ; Birenjith, S. ; Vijay Kumar, P. (2013) DMT of parallel-path and layered networks under the half-duplex constraint IEEE Transactions on Information Theory, 59 (6). pp. 3875-3891. ISSN 0018-9448

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Official URL: http://ieeexplore.ieee.org/document/6482233/

Related URL: http://dx.doi.org/10.1109/TIT.2013.2253162

Abstract

In this paper, we study the diversity-multiplexing-gain tradeoff (DMT) of wireless relay networks under the half-duplex constraint. It is often unclear what penalty if any, is imposed by the half-duplex constraint on the DMT of such networks. We study two classes of networks; the first class, called KPP(I) networks, is the class of networks with the relays organized in K parallel paths between the source and the destination. While we assume that there is no direct source-destination path, the K relaying paths can interfere with each other. The second class, termed as layered networks, is comprised of relays organized in layers, where links exist only between adjacent layers. We present a communication scheme based on static schedules and amplify-and-forward relaying for these networks. We also show that for KPP(I) networks with K≥3, the proposed schemes can achieve full-duplex DMT performance, thus demonstrating that there is no performance hit on the DMT due to the half-duplex constraint. We also show that, for layered networks, a linear DMT of dmax (1-r)+ between the maximum diversity dmax and the maximum MG, rmax=1 is achievable. We adapt existing DMT optimal coding schemes to these networks, thus specifying the end-to-end communication strategy explicitly.

Item Type:Article
Source:Copyright of this article belongs to Institute of Electrical and Electronic Engineers.
Keywords:Relay Networks; Amplify-and-Forward Protocols; Cooperative Diversity, Diversity-Multiplexing Gain Tradeoff, Explicit Codes; KPP Networks; Layered Networks; Multi-Antenna Networks; Multi-Hop Networks
ID Code:110064
Deposited On:31 Jan 2018 09:59
Last Modified:31 Jan 2018 09:59

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