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On Communication Over Unknown Sparse Frequency-Selective Block-Fading Channels

机译:关于未知稀疏频率选择性块衰落信道上的通信

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This paper considers the problem of reliable communication over discrete-time channels whose impulse responses have length $L$ and exactly $Sleq L$ non-zero coefficients, and whose support and coefficients remain fixed over blocks of $N>L$ channel uses but change independently from block to block. Here, it is assumed that the channel's support and coefficient realizations are both unknown, although their statistics are known. Assuming Gaussian non-zero-coefficients and noise, and focusing on the high-SNR regime, it is first shown that the ergodic noncoherent channel capacity has pre-log factor $1-{{S}over{N}}$ for any $L$ . It is then shown that, to communicate with arbitrarily small error probability at rates in accordance with the capacity pre-log factor, it suffices to use pilot-aided orthogonal frequency-division multiplexing (OFDM) with $S$ pilots per fading block, in conjunction with an appropriate noncoherent decoder. Since the achievability result is proven using a noncoherent decoder whose complexity grows exponentially in the number of fading blocks $K$ , a simpler decoder, based on $S+1$ pilots, is also proposed. Its $epsilon$-achievable rate is shown to have pre-log factor equal to $1-{{S+1}over{N}}$ with the previously considered channel, while its achievable rate is shown to have pre-log factor -n-n$1-{{S+1}over{N}}$ when the support of the block-fading channel remains fixed over time.
机译:本文考虑了离散时间信道上的可靠通信问题,该信道的脉冲响应长度为$ L $,正好为$ Sleq L $非零系数,并且在$ N> L $信道使用的块上其支持和系数保持固定,但逐块独立更改。在此,尽管知道信道的统计信息,但假设信道的支持和系数实现均未知。假设高斯非零系数和噪声,并关注高SNR体制,首先表明遍历非相干信道容量的任何对数L的对数因子为$ 1-{{S} over {N}} $ $。然后表明,为了以与容量前对数因子一致的速率以任意小的错误概率进行通信,在每个衰落块中,使用导频辅助正交频分复用(OFDM)并在每个衰落块中使用$ S $个导频就足够了。与适当的非相干解码器配合使用。由于使用非相干解码器证明了可实现性结果,该非相干解码器的复杂度在衰落块$ K $的数量中呈指数增长,因此,还提出了一种基于$ S + 1 $导频的简单解码器。在先前考虑的渠道下,其可实现的ε$的对数前因数已显示等于1-1-{{S + 1} over {N}} $,而其可实现的对数的比率被表明具有对数前因数- nn $ 1-{{S + 1} over {N}} $,当块衰落信道的支持随着时间的推移保持固定时。

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