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The DoF of the asymmetric MIMO interference channel with square direct link channel matrices

机译:具有方形直接链路信道矩阵的非对称MIMO干扰信道的DoF

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This paper studies the sum Degrees of Freedom (DoF) of K-user asymmetric MIMO Interference Channel (IC) with square direct link channel matrices, that is, the u-th transmitter and its intended receiver have M ϵ N antennas each, where M need not be the same for all u ϵ [1 : K]. Starting from a 3-user example, it is shown that existing cooperation-based outer bounds are insufficient to characterize the DoF. Moreover, it is shown that two distinct operating regimes exist. With a dominant user, i.e., a user that has more antennas than the other two users combined, it is DoF optimal to let that user transmit alone on the IC. Otherwise, it is DoF optimal to decompose and operate the 3-user MIMO IC as an (M + M + M)-user SISO IC. This indicates that MIMO operations are useless from a DoF perspective in systems without a dominant user. The main contribution of the paper is the derivation of a novel outer bound for the general K-user case that is tight in the regime where a dominant user is not present; this is done by generalizing the insights from the 3-user example to an arbitrary number of users.
机译:本文研究具有正方形直接链路信道矩阵的K用户非对称MIMO干扰信道(IC)的总自由度(DoF),即第u个发射机及其预期的接收机各有M ϵ N个天线,其中M所有u ϵ [1:K]不必相同。从3个用户的示例开始,表明现有的基于合作的外部边界不足以表征DoF。此外,表明存在两种不同的运行方式。对于占主导地位的用户(即,其天线比其他两个用户的总和更多的用户),DoF最佳方法是让该用户在IC上单独发送。否则,将3个用户的MIMO IC分解并作为(M + M + M)个用户的SISO IC进行操作是DoF最佳的。这表明从DoF角度来看,在没有主要用户的系统中,MIMO操作是无用的。本文的主要贡献是推导了一般K用户案例的新颖外部边界,该边界在不存在主要用户的情况下非常严格。这是通过将3用户示例的见解推广到任意数量的用户来完成的。

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