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Degrees of Freedom of Rank-Deficient MIMO Interference Channels

机译:秩不足的MIMO干扰信道的自由度

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We characterize the degrees of freedom (DoF) of multiple-input and multiple-output (MIMO) interference channels with rank-deficient channel matrices. For the two-user rank-deficient MIMO interference channel, we provide a tight outer bound to show that the previously known achievable DoF in the symmetric case is optimal and generalize the result to fully asymmetric settings. For the -user rank-deficient interference channel, we improve the previously known achievable DoF and provide a tight outer bound to establish optimality in symmetric settings. In particular, we show that for the -user rank-deficient interference channel, when all nodes have antennas, all direct channels have rank , all cross channels are of rank , and the channels are otherwise generic, the optimal DoF value per user is . Notably for interference channels, the rank-deficiency of direct channels does not help and the rank deficiency of cross-channels does not hurt. The main technical challenge is to account for the spatial dependences introduced by rank deficiencies in the interference alignment schemes that typically rely on the independence of channel coefficients.
机译:我们用秩不足的信道矩阵来表征多输入和多输出(MIMO)干扰信道的自由度(DoF)。对于两用户秩不足的MIMO干扰信道,我们提供了一个紧密的外部边界,以表明对称情况下以前已知的可实现DoF是最佳的,并将结果推广到完全不对称的设置中。对于-user等级不足的干扰信道,我们改进了先前已知的可实现的DoF,并提供了一个紧密的外部界限来建立对称设置中的最优性。尤其是,我们表明,对于-用户秩不足干扰信道,当所有节点都具有天线,所有直接信道均具有秩,所有交叉信道均具有秩时,并且这些信道是通用信道时,每个用户的最佳DoF值为。特别是对于干扰信道,直接信道的秩不足无济于事,交叉信道的秩不足也无害。主要的技术挑战是解决通常由信道系数的独立性引起的干扰对准方案中秩缺陷所引起的空间依赖性。

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