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Beam Tracking for Interference Alignment in Slowly Fading MIMO Interference Channels: A Perturbations Approach Under a Linear Framework

机译:慢衰落的MIMO干扰信道中用于干扰对准的波束跟踪:线性框架下的摄动方法

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摘要

In this paper, the beam design for signal-space interference alignment in slowly fading multiuser multiple-input multiple-output (MIMO) interference channels is considered. Based on a linear formulation for interference alignment, a predictive beam tracking algorithm is proposed using matrix perturbation theory. The proposed algorithm, based on a mixture of iteration and update, computes interference-aligning beamforming vectors at the current time by updating the previous beam vectors based on the channel difference between the two time steps during the predictively updating phase, and yields significant reduction in computational complexity compared with existing methods recalculating beams at each time step. The tracking performance of the algorithm is analyzed in terms of mean square error and sum rate loss between the predictively updating approach and the recalculating approach, and the impact of imperfect channel knowledge is also investigated under the state-space channel model. Numerical results show that the proposed algorithm has almost the same performance as non-predictive methods in sum rate. Thus, the proposed algorithm provides a very efficient way to realize interference alignment in a realistic slowly fading MIMO channel environment.
机译:本文考虑了慢衰落的多用户多输入多输出(MIMO)干扰信道中用于信号空间干扰对准的波束设计。基于用于干涉对准的线性公式,提出了一种基于矩阵摄动理论的预测光束跟踪算法。所提出的算法基于迭代和更新的混合,通过在预测性更新阶段基于两个时间步之间的信道差异来更新先前的波束矢量,从而计算当前时间的干扰对准波束形成矢量,并显着降低了与在每个时间步长重新计算光束的现有方法相比,计算复杂度更高。根据预测更新方法与重新计算方法之间的均方误差和总和率损失,分析了算法的跟踪性能,并在状态空间信道模型下研究了信道知识不完善的影响。数值结果表明,所提算法的总和率与非预测方法具有几乎相同的性能。因此,所提出的算法提供了一种非常有效的方式来在现实的慢衰落的MIMO信道环境中实现干扰对准。

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