完成无CSIT的MIMO干扰网络的自由度表征

C. Vaze, M. Varanasi
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引用次数: 3

摘要

从自由度域的角度研究了在发射机无信道状态信息的假设下,双用户多输入多输出(MIMO)干扰和认知信道。Mi和Ni分别表示发射器i和接收器i处的天线数,除了min(M1,N1) > N2 > M2(或min(M2,N2) > N1 > M1), MIMO干扰信道的DoF区域最近由Huang等人、Zhu和Guo以及本文作者对所有4元组(M1,M2,N1,N2)的值进行了表征。后一种情况最近由朱和郭解决,他们提供了一个紧密的外部边界。本文基于干扰定位的思想,给出了一种更简单、适用范围更广的证明。在此基础上,建立了最小(M1 + M2,N1) > N2 > M2(具有第二发射机认知)的MIMO认知信道(在一定的衰落分布限制下)的DoF区域,这是作者之前得到的唯一一个内外边界不紧的类别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On completing the degrees of freedom characterization of MIMO interference networks with No CSIT
The two-user multi-input, multi-output (MIMO) interference and cognitive radio channels are studied under the assumption of no channel state information at the transmitter (CSIT) from the degrees of freedom (DoF) region perspective. With Mi and Ni denoting the number of antennas at transmitter i and receiver i respectively, the DoF region of the MIMO interference channel was recently characterized by Huang et al., Zhu and Guo, and by the authors of this paper for all values of the 4-tuple (M1,M2,N1,N2), except when min(M1,N1) > N2 > M2 (or min(M2,N2) > N1 > M1). This latter case was solved more recently by Zhu and Guo, who provided a tight outer-bound. Here, a simpler and more widely applicable proof of that outer-bound is given based on the idea of interference localization. Using it, the DoF region is also established for the class of MIMO cognitive radio channels (under certain restrictions on the fading distributions) when min(M1 + M2,N1) > N2 > M2 (with the second transmitter cognitive) - the only class for which the inner and outer bounds previously obtained by the authors were not tight.
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