DMT of multi-hop cooperative networks-Part II: Layered and multi-antenna networks

K. Sreeram, B. Sasidharan, P. V. Kumar
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引用次数: 13

Abstract

We consider single-source, single-sink (SS-SS) multi-hop relay networks, with slow-fading Rayleigh links. This two-part paper aims at giving explicit protocols and codes to achieve the optimal diversity-multiplexing tradeoff (DMT) of two classes of multi-hop networks: K-parallel-path (KPP) networks and Layered networks. While single-antenna KPP networks were the focus of the first part, we consider layered and multi-antenna networks in this second part. We prove that a linear DMT between the maximum diversity imax and the maximum multiplexing gain of 1 is achievable for single-antenna fully-connected layered networks under the half-duplex constraint. This is shown to be equal to the optimal DMT if the number of relaying layers is less than 4. For the multiple-antenna case, we provide an achievable DMT, which is significantly better than known lower bounds for half duplex networks. Along the way, we compute the DMT of parallel MIMO channels in terms of the DMT of the component channel. For arbitrary ss-ss single-antenna directed acyclic networks with full-duplex relays, we prove that a linear tradeoff between maximum diversity and maximum multiplexing gain is achievable using an amplify-and-forward (AF) protocol. Explicit short- block-length codes are provided for all the proposed protocols. Two key implications of the results in the two-part paper are that the half-duplex constraint does not necessarily entail rate loss by a factor of two as previously believed and that simple AF protocols are often sufficient to attain the best possible DMT.
多跳合作网络的DMT -第二部分:分层和多天线网络
我们考虑单源,单接收器(SS-SS)多跳中继网络,具有慢衰落瑞利链路。本文分为两部分,旨在给出明确的协议和代码,以实现两类多跳网络:k -并行路径(KPP)网络和分层网络的最佳分集复用权衡(DMT)。虽然单天线KPP网络是第一部分的重点,但我们在第二部分中考虑了分层和多天线网络。证明了在半双工约束下,单天线全连接分层网络的最大分集imax和最大复用增益1之间的线性DMT是可以实现的。如果中继层数小于4层,则这等于最优DMT。对于多天线情况,我们提供了一个可实现的DMT,它明显优于半双工网络的已知下界。在此过程中,我们根据分量信道的DMT计算并行MIMO信道的DMT。对于任意具有全双工中继的ss-ss单天线有向无环网络,我们证明了使用放大转发(AF)协议可以实现最大分集和最大复用增益之间的线性权衡。为所有提出的协议提供了显式的短块长度代码。在这篇由两部分组成的论文中,结果的两个关键含义是,半双工约束并不一定像以前认为的那样导致速率损失两倍,而且简单的自动对焦协议通常足以获得最佳的DMT。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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