使用mimo中继多路复用的IEEE 802.16J系统的容量增强

A. I. Sulyman, A. Akhlaq, H. Hassanein, A. Alsanie, S. Alshebeili
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引用次数: 2

摘要

本文分析了采用MIMO天线的ieee802.16 j系统的中继复用配置。IEEE 802.16j中多种中继路径的可用性激发了两种中继配置:中继分集和中继多路复用。现有的工作主要集中在继电分集方法上。在本文中,我们探讨了中继多路复用的替代方案。利用码分多址中继接入(CDMRA)的概念,其中中继站(RS)被分配唯一的接入码,用于从源到目的的独立数据流的并行中继,我们得出了中继复用系统与中继分集方法的容量比较。结果表明,分集方法的容量随系统信噪比的对数增长,而在iid信道情况下,中继复用方法的容量随系统中创建的并行中继路径的数量线性增长。因此,中继多路复用提供了实现高速多跳通信的负担得起的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Capacity enhancements in IEEE 802.16J systems using MIMO-relay multiplexing
This paper presents the analysis of relay multiplexing configuration for IEEE 802.16j systems employing MIMO antennas. The availability of multiple relay paths in IEEE 802.16j motivates two relay configurations: relay diversity and relay multiplexing. Existing works have focused on the relay diversity method. In this paper, we explore the relay multiplexing alternative. Using the concept of code-division multiple relay access (CDMRA), where relay stations (RS) are assigned unique access codes for parallel relaying of independent data streams from source to destination, we derive the capacity of the relay multiplexing system in comparison with the relay diversity methods. We show that while the capacity of the diversity methods grows with the log of the system SNR, the capacity of the relay multiplexing approach grows linearly with the number of parallel relay paths created in the system for iid channel case. Relay multiplexing thus provides affordable means of realizing high-speed multihop communications.
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