Achievable SNR and rate regions for OFDM-based asynchronous two-way relay networks

J. Mirzaee, S. Shahbazpanahi
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引用次数: 4

Abstract

In this paper, we develop an algorithm to characterize the achievable signal-to-noise ratio (SNR) and rate regions for an asynchronous bi-directional multi-carrier relay network. The network we consider is composed of two single-antenna transceivers and multiple single-antenna relays, thereby creating a multipath communication between the two transceivers. Each subcarrier is used to enable a bidirectional communication between two outer transceivers. In our data model, we assume that different relaying paths have different propagation delays. We aim to find the achievable rate region of such a network through optimal distributed beamforming at the relays and subcarrier power control at two transceivers. To do so, we introduce our optimization framework, analyze its structure, and show how it can be tackled.
基于ofdm的异步双向中继网络可实现的信噪比和速率区域
在本文中,我们开发了一种算法来表征异步双向多载波中继网络的可实现信噪比(SNR)和速率区域。我们考虑的网络由两个单天线收发器和多个单天线中继组成,从而在两个收发器之间创建多径通信。每个子载波用于实现两个外部收发器之间的双向通信。在我们的数据模型中,我们假设不同的中继路径具有不同的传播延迟。我们的目标是通过在中继上的最佳分布式波束形成和在两个收发器上的子载波功率控制来找到这种网络的可实现速率区域。为此,我们介绍了我们的优化框架,分析了它的结构,并展示了如何解决它。
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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