Power and time-sharing optimization for three half-duplex relay networks

P. Baracca, S. Tomasin, N. Benvenuto
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引用次数: 1

Abstract

The deployment of relays has been recognized as a valid way to increase spectral efficiency and coverage in wireless systems. In this work we consider a network where no communication is allowed from the source to the destination and transmission is performed only with the assistance of three relays operating in half-duplex mode. Moreover, time is divided in two phases and only one relay is transmitting during odd phases, while the other two are transmitting during even phases. The two relays transmit signals belonging to different scaled and rotated QAM constellations. However, in order to simplify the receiver, the two signals combine through the channels to a symbol belonging to a larger QAM constellation. Then, we develop a practical algorithm to perform power and time-sharing optimization in order to maximize spectral efficiency. Numerical results show that our proposal outperforms the scenario where cooperative relays employ the classical adaptive decode-and-forward and indeed approaches the spectral efficiency obtained when relays employ Slepian-Wolf encoding.
三种半双工中继网络的功率和分时优化
中继的部署已被认为是提高无线系统频谱效率和覆盖范围的有效途径。在这项工作中,我们考虑一个网络,其中不允许从源到目的的通信,并且仅在三个以半双工模式工作的中继的协助下进行传输。并且,时间分为两相,在奇相时只有一个继电器发送,在偶相时有两个继电器发送。这两个中继发送的信号属于不同比例和旋转的QAM星座。然而,为了简化接收机,两个信号通过信道合并为一个属于更大的QAM星座的符号。然后,我们开发了一个实用的算法来进行功率和分时优化,以最大限度地提高频谱效率。数值结果表明,我们的方案优于传统的自适应译码转发方案,并且接近采用睡狼编码时的频谱效率。
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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