基于部分信道状态信息的正交多址多中继信道(OMAMRC)快速自适应

Ali Al Khansa, R. Visoz, Y. Hayel, S. Lasaulce, Rasha Alkhansa
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引用次数: 1

摘要

协作通信是提高无线网络覆盖和容量的最有效技术之一。本文研究了正交多址多中继信道(OMAMRC),其中多个节点合作将消息发送到单个目的地(传统无线网络中典型的上行链路环境)。目标节点作为中心节点,调度合作重传,并为源节点分配传输速率。链路自适应(Link Adaptation, LA)是为了优化系统的频谱效率而设计的。在我们之前的工作中,研究了两种LA算法:慢速LA (SLA)和快速LA (FLA)。SLA依赖于目的地所有链路的信道分布信息(CDI), FLA依赖于所有链路的信道状态信息(CSI)。显然,SLA在通道信息获取控制开销方面要求较低,而FLA提供了更接近最优的调度决策。在这项工作中,我们提出并分析了一种结合两者优点的新型实用链路自适应算法。它基于具有部分CSI的FLA策略。我们的数值结果表明,该算法实现了接近FLA的频谱效率,同时需要较少的CSI采集控制开销。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fast Link Adaptation with Partial Channel State Information for Orthogonal Multiple Access Multiple Relay Channel (OMAMRC)
Cooperative communication is known to be one of the most effective techniques to improve the coverage and capacity of wireless networks. An Orthogonal Multiple Access Multiple Relay Channel (OMAMRC) is considered in the paper, where several nodes cooperate to send their messages to a single destination (typical uplink context in traditional wireless networks). The destination, as a central node, schedules the cooperative re-transmissions and allocates the transmission rates to the sources. The Link Adaptation (LA) is designed to optimize the spectral efficiency of the system. In our previous work, two LA algorithms were studied: Slow LA (SLA) and Fast LA (FLA). SLA relies on the Channel Distribution Information (CDI) of all links at the destination, while FLA relies on the Channel State Information (CSI) of all links. Clearly, SLA is less demanding in terms of channel information acquisition control overhead while FLA provides closer-to-optimum scheduling decisions. In this work, we propose and analyze a novel practical link adaptation algorithm combining the benefits of both. It is based on a FLA strategy with partial CSI. Our numerical results show that the proposed algorithm achieves a spectral efficiency that is close to the one achieved by FLA while demanding less CSI acquisition control overhead.
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