Perfect versus imperfect interference alignment using multiple MIMO relays

Hussein Al-Shatri, R. S. Ganesan, A. Klein, T. Weber
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引用次数: 3

Abstract

Interference alignment is a promising approach to handle the interference in mobile radio networks especially at high SNR. In the present paper, the interference alignment is achieved using a number of MIMO relays in a scenario with K single antenna node pairs. A two-phase transmission scheme is considered assuming the channel to be constant during the transmission phases. Firstly, the source nodes transmit to both the relays and the destination nodes. Secondly, the source nodes and the relays retransmit to the destination nodes. By adapting the relays' processing matrices to the channel while fixing the nodes' filters, a linear system of equations is formulated which is solved for the interference alignment. The interference signals can be aligned perfectly at the destination nodes if there are enough relays. A closed-form solution with minimum retransmit energy at the relays is selected if the linear system of equations is under-determined. If the system of linear equations has no solution, i.e., if there are not enough relays, least squares based solutions are employed which minimize the total received interference. The results show that K/2 degrees of freedom are achieved if the interference signals are aligned perfectly. Furthermore, aligning the interference signals imperfectly achieves a capacity-gain over perfect interference alignment at low and moderate SNRs while requiring a lower number of relays.
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使用多个MIMO继电器进行完美或不完美的干扰对准
干扰对准是一种很有前途的处理移动无线网络干扰的方法,特别是在高信噪比条件下。在本文中,在具有K个单天线节点对的情况下,使用多个MIMO中继实现干扰对准。假设信道在传输阶段保持不变,考虑两相传输方案。首先,源节点向中继和目的节点发送数据。其次,源节点和中继重新发送到目的节点。通过在固定节点滤波器的同时使继电器的处理矩阵适应信道,建立了一个求解干扰对准的线性方程组。如果有足够的中继,干扰信号可以在目的节点上完全对齐。如果线性方程组不确定,则选择继电器处具有最小重传能量的封闭解。如果线性方程组没有解,即没有足够的继电器,则采用基于最小二乘的解,使接收到的总干扰最小。结果表明,在干扰信号完全对准的情况下,可实现K/2个自由度。此外,在低信噪比和中等信噪比下,不完全对准干扰信号可以实现比完美干扰对准更大的容量增益,同时需要更少的继电器。
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