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The Diversity-Multiplexing Tradeoff of the MIMO Half-Duplex Relay Channel

机译:MIMO半双工中继信道的分集复用权衡

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The fundamental diversity-multiplexing tradeoff of the three-node, multi-input, multi-output (MIMO), quasi-static, Rayleigh faded, half-duplex relay channel is characterized for an arbitrary number of antennas at each node and in which opportunistic scheduling (or dynamic operation) of the relay is allowed, i.e., the relay can switch between receive and transmit modes at a channel dependent time. In this most general case, the diversity-multiplexing tradeoff is characterized as a solution to a simple, two-variable optimization problem. This problem is then solved in closed form for special classes of channels defined by certain restrictions on the numbers of antennas at the three nodes. The key mathematical tool developed here that enables the explicit characterization of the diversity-multiplexing tradeoff is the joint eigenvalue distribution of three mutually correlated random Wishart matrices. Besides being relevant here, this distribution result is interesting in its own right. Previously, without actually characterizing the diversity-multiplexing tradeoff, the optimality in this tradeoff metric of the dynamic compress-and-forward protocol based on the classical compress-and-forward scheme of Cover and El Gamal was shown by Yuksel and Erkip. However, this scheme requires global channel state information at the relay. In this paper, the so-called quantize-map and forward (QMF) coding scheme is adopted as the achievability scheme with the added benefit that it achieves optimal tradeoff with only the knowledge of the (channel dependent) switching time at the relay node. Moreover, in special classes of the MIMO half-duplex relay channel, the optimal tradeoff is shown to be attainable even without this knowledge. Such a result was previously known only for the half-duplex relay channel with a single antenna at each node, also via the QMF scheme. More generally, the explicit characterization of the tradeoff curve in this study enables the in-depth comparisons herein - f full-duplex versus half-duplex relaying as well as static versus dynamic relaying, both as a function of the numbers of antennas at the three nodes.
机译:三节点,多输入,多输出(MIMO),准静态,瑞利衰落,半双工中继信道的基本分集复用权衡是针对每个节点上任意数量的天线进行的,并且其中机会允许对中继进行调度(或动态操作),即,中继可以在与信道有关的时间在接收和发送模式之间切换。在这种最一般的情况下,分集复用权衡的特点是解决了一个简单的两变量优化问题。然后,通过对三个节点上天线数量的某些限制所定义的特殊类别的信道,以封闭形式解决该问题。这里开发的能够明确表征分集复用权衡的关键数学工具是三个相互关联的随机Wishart矩阵的联合特征值分布。除了在这里有意义之外,该分发结果本身也很有趣。以前,在没有真正描述分集复用权衡的情况下,Yuksel和Erkip展示了基于Cover and El Gamal经典压缩和转发方案的动态压缩和转发协议的这种权衡度量的最优性。但是,该方案要求中继器具有全局信道状态信息。在本文中,采用所谓的量化映射和前向(QMF)编码方案作为可实现方案,其附加好处是,仅了解中继节点(与信道有关的)切换时间,即可实现最佳折衷。此外,在MIMO半双工中继信道的特殊类别中,即使没有这些知识,也可以实现最佳折衷。先前也仅通过QMF方案才知道在每个节点上只有一个天线的半双工中继信道的这种结果。更一般而言,这项研究中权衡曲线的明确表征使得本文能够进行深入比较-全双工与半双工中继以及静态与动态中继,这两者都是三个天线的数量的函数节点。

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