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Approximate Capacity of Fast Fading Interference Channels With no Instantaneous CSIT

机译:没有瞬时CSIT的快速衰落干扰信道的近似容量

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摘要

We develop a characterization of fading models, which assigns a number calledlogarithmic Jensen’s gapto a given fading model. We show that as a consequence of a finite logarithmic Jensen’s gap, an approximate capacity region can be obtained for fast fading interference channels (FF-ICs) for several scenarios. We illustrate three instances where a constant capacity gap can be obtained as a function of the logarithmic Jensen’s gap. First, for an FF-IC with neither feedback nor instantaneous channel state information at transmitter (CSIT), if the fading distribution has finite logarithmic Jensen’s gap, we show that a rate-splitting scheme based on the average interference-to-noise ratio can achieve its approximate capacity. Second, we show that a similar scheme can achieve the approximate capacity of FF-IC with feedback and delayed CSIT, if the fading distribution has finite logarithmic Jensen’s gap. Third, when this condition holds, we show that point-to-point codes can achieve approximate capacity for a class of FF-ICs with feedback. We prove that the logarithmic Jensen’s gap is finite for common fading models, including Rayleigh and Nakagami fading, thereby obtaining the approximate capacity region of FF-IC with these fading models.
机译:我们开发了衰落模型的表征,该模型分配了一个称为 n 到给定衰落模型的对数詹森差距 n。我们表明,由于有限的对数詹森(Jensen)间隙,可以在几种情况下获得快速衰落干扰信道(FF-IC)的近似容量区域。我们举例说明了三种情况,其中可以获得恒定的容量缺口作为对数詹森缺口的函数。首先,对于既没有反馈也没有发射机处瞬时信道状态信息(FFT)的FF-IC,如果衰落分布具有有限的对数詹森(Jensen)间隙,我们表明基于平均干扰噪声比的速率分离方案可以达到其近似容量。其次,我们证明,如果衰落分布具有有限的对数詹森(Jensen)间隙,则类似的方案可以实现带有反馈和延迟CSIT的FF-IC的近似容量。第三,当这种情况成立时,我们证明了点对点代码可以实现具有反馈的一类FF-IC的近似容量。我们证明了对数Jensen间隙对于包括Rayleigh和Nakagami衰落在内的常见衰落模型是有限的,从而使用这些衰落模型获得FF-IC的近似容量区域。

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