Regularized channel inversion dirty-paper coding (RCI-DPC): Narrowing the power offset in MIMO X channels

A. Anderson
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引用次数: 1

Abstract

The multiple-input multiple-output (MIMO) X channel consists of two transmitting nodes each sending independent data to two receiving nodes - all nodes equipped with multiple antennas. The MIMO X channel is a more general case of the well-studied broadcast (BC), multiple-access (MAC), and interference (IC) channels. A signaling technique called interference alignment (IA) has been shown to achieve certain multiplexing gains available to the X channel; however, interference alignment maintains a power offset from optimal cooperative signaling in the equivalent single-user channel. Cooperation or sharing of data between transmit and/or receive nodes provides significant increase in the achievable multiplexing and power offset gains. In this current work an adaptation of a common beamforming technique is used to decrease the power offset seen with interference alignment while maintaining the multiplexing gains of X channels guaranteed with interference alignment. Akin to zero-forcing dirty-paper coding (ZF-DPC) and interference alignment, the proposed technique uses regularized channel inversion with dirty-paper coding (RCI-DPC) to maximize the sum-rate of theMIMO X channel and hence attempts to minimize the associated power offset in the same channels.
正则化信道反转脏纸编码(RCI-DPC):缩小MIMO X信道的功率偏移
多输入多输出(MIMO) X通道由两个发送节点组成,每个发送节点向两个接收节点发送独立的数据——所有节点都配备了多个天线。MIMO X信道是广播(BC)、多址(MAC)和干扰(IC)信道的一种更一般的情况。一种称为干扰对准(IA)的信号技术已被证明可以实现X信道的某些复用增益;然而,在等效的单用户信道中,干扰对准保持了最优合作信令的功率偏移。发送和/或接收节点之间的数据合作或共享提供了可实现的多路复用和功率偏移增益的显着增加。在当前的工作中,采用了一种通用波束形成技术来降低干扰对准时的功率偏移,同时保持干扰对准保证的X通道的复用增益。类似于零强制脏纸编码(ZF-DPC)和干扰对准,所提出的技术使用正则化信道反转与脏纸编码(RCI-DPC)来最大化theMIMO X信道的和速率,从而试图最小化相同信道中的相关功率偏移。
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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