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On the Degrees of Freedom Achievable Through Interference Alignment in a MIMO Interference Channel

机译:通过MIMO干扰信道中的干扰对准可实现的自由度

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Consider a $K$-user flat fading MIMO interference channel where the $k$th transmitter (or receiver) is equipped with $M_k$ (respectively $N_k$ ) antennas. If an exponential (in $K$) number of generic channel extensions are used either across time or frequency, Cadambe and Jafar showed that the total achievable degrees of freedom (DoF) can be maximized via interference alignment, resulting in a total DoF that grows linearly with $K$ even if $M_k$ and $N_k$ are bounded. In this work we consider the case where no channel extension is allowed, and establish a general condition that must be satisfied by any degrees of freedom tuple $(d_1,d_2,ldots,d_K)$ achievable through linear interference alignment. For a symmetric system with $M_k=M,$ $N_k=N,$ $d_k=d$ for all $k$, this condition implies that the total achievable DoF cannot grow linearly with $K$, and is in fact no more than $K(M+N)/(K+1)$. We also show that this bound is tight when the n-n-number of antennas at each transceiver is divisible by $d$, the number of data streams per user.
机译:考虑一个$ K $用户平坦衰落MIMO干扰信道,其中第$ k $个发射机(或接收器)配备了$ M_k $(分别为$ N_k $)天线。如果在时间或频率上使用指数级(以K $为单位)的通用信道扩展,Cadambe和Jafar表示,通过干扰对准,可实现的总自由度(DoF)可以最大化,从而导致总的DoF增大即使$ M_k $和$ N_k $有界,它也与$ K $线性相关。在这项工作中,我们考虑不允许信道扩展的情况,并建立一个一般条件,必须通过线性干扰对准来实现任何自由度元组$(d_1,d_2,ldots,d_K)$。对于具有$ M_k = M,$ $ N_k = N,$ $ N_k = d $个所有$ k $的对称系统,此条件意味着可实现的总DoF不能随$ K $线性增长,实际上不再比$ K(M + N)/(K + 1)$。我们还表明,当每个收发器上的n-n个天线可以除以$ d $(每个用户的数据流数量)时,这个界限就很严格。

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