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Quasi-Static Multiple-Antenna Fading Channels at Finite Blocklength

机译:有限块长的准静态多天线衰落信道

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This paper investigates the maximal achievable rate for a given blocklength and error probability over quasi-static multiple-input multiple-output fading channels, with and without channel state information at the transmitter and/or the receiver. The principal finding is that outage capacity, despite being an asymptotic quantity, is a sharp proxy for the finite-blocklength fundamental limits of slow-fading channels. Specifically, the channel dispersion is shown to be zero regardless of whether the fading realizations are available at both transmitter and receiver, at only one of them, or at neither of them. These results follow from analytically tractable converse and achievability bounds. Numerical evaluation of these bounds verifies that zero dispersion may indeed imply fast convergence to the outage capacity as the blocklength increases. In the example of a particular 1 $,times,$ 2 single-input multiple-output Rician fading channel, the blocklength required to achieve 90% of capacity is about an order of magnitude smaller compared with the blocklength required for an AWGN channel with the same capacity. For this specific scenario, the coding/decoding schemes adopted in the LTE-Advanced standard are benchmarked against the finite-blocklength achievability and converse bounds.
机译:本文研究了准静态多输入多输出衰落信道上给定块长和错误概率的最大可实现速率,在发送器和/或接收器上有或没有信道状态信息。主要发现是,尽管容量是一个渐近量,但它却可以很好地替代慢衰落信道的有限块长基本限制。具体地,无论衰落实现在发射机和接收机两者处,仅在它们之一处还是在这两个处均不可用,信道色散都显示为零。这些结果来自分析上易处理的逆境和可实现性界限。这些边界的数值评估验证了零色散实际上可能意味着随着块长度的增加,快速收敛到中断容量。在一个特定的1 x 2的单输入多输出Rician衰落信道的示例中,与具有AWGN信道的AWGN信道所需的块长相比,实现90%的容量所需的块长大约小一个数量级。相同的容量。对于这种特定情况,LTE-Advanced标准中采用的编码/解码方案针对有限块长度可实现性和相反边界进行了基准测试。

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