Decode-and-Forward Relaying Protocol with Optimal Degrees of Freedom for Proactively Selective Wireless Relay Networks

K. Woradit
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Abstract

This paper proposes a new decode-and-forward relaying protocol for wireless relay networks with relay selection to maximize the end-to-end instantaneous capacity. The main idea is to optimize the degrees of freedom, which may be time, frequency, or both time and frequency, and are unoptimized in the conventional decode-and-forward relaying protocol. Without loss of generality, we focus on optimizing the time of relaying phases, namely, the source-to-relay phase, and the relay-to-destination phase. We proved that the proposed protocol always yield greater end-to-end instantaneous capacity than or equal to that of the conventional protocol, and also proved that the proposed protocol sometimes select the relay node, different from the relay node selected by the conventional protocol. The conventional and the proposed protocols are compared in terms of ergodic capacity and outage probability by computer simulations. The comparisons show that the proposed relaying protocol performs better than the conventional relaying protocol in all signal-to-noise ratio regimes.
主动选择无线中继网络中最优自由度的译码转发中继协议
提出了一种基于中继选择的无线中继网络译码转发协议,以实现端到端瞬时容量的最大化。其主要思想是优化自由度,自由度可以是时间、频率,也可以是时间和频率兼有,这在传统的译码转发中继协议中是没有优化的。在不失一般性的前提下,我们着重于优化继电相位,即源到中继相位和中继到目的相位的时间。证明了所提出的协议总能产生大于或等于传统协议的端到端瞬时容量,并证明了所提出的协议有时会选择中继节点,而不是传统协议所选择的中继节点。通过计算机仿真,比较了传统协议和新协议的遍历容量和中断概率。结果表明,该中继协议在所有信噪比条件下都优于传统中继协议。
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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