缓冲区限制物理层网络编码的功率控制

Meng Qingmin, Pang Fengmei, Zou Yulong
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引用次数: 0

摘要

新一代无线网络对高数据速率和高能效的要求将重塑包括无线中继在内的无线异构网络架构的设计。针对无线网络中的两顶双向信息交换,提出了一种采用双向中继信道和物理广播的无线传输设计。双向中继信道大致分为解码转发(DF)策略和放大转发(AF)策略。本文主要研究基于df的双向继电器在有限和非有限缓冲器配置下的功率控制方案。该方案假定两个源节点的发射机都具有双向中继信道的信道增益信息。数值计算结果表明:当最大缓冲区的大小设置为适当值时,中继节点的缓冲区大小不会影响瑞利衰落信道的平均端到端容量。此外,与等功率控制方案相比,最优功率控制将显著提高传输策略的端到端平均容量。
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Power control for buffer limited physical layer network coding
The requirement of high data rate and energy efficiency for a new generation of wireless network should reshape the designs of wireless heterogeneous network architecture including wireless relaying. For two-top bi-directional information exchange in wireless networks, we consider a wireless transmission design, which adopts the bi-directional relaying channel and the physical broadcasting. The bi-directional relaying channel is roughly divided into Decode and Forward (DF) strategy and Amplify and Forward (AF) strategy. This work focuses on a power control scheme of the DF-based bi-directional relaying in the configuration of a limited and a non-limited buffer. This scheme assumes that the transmitters of two source nodes have the channel gain information of the bi-directional relaying channel. The numerical results show that: the size of buffer at the relay node will not affect average end-to-end capacity over the Rayleigh fading channel while the size of maximum buffer is set as to an appropriate value. In addition, optimal power control will significantly improve the average end-to-end capacity of the transmission strategy compared to that of the equal power control scheme.
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