Nested Sparse Feedback Codes for Point-to-Point, Multiple Access, and Random Access Channels

Recep Can Yavas, V. Kostina, M. Effros
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Abstract

This paper investigates variable-length feedback codes for discrete memoryless channels in point-to-point, multiple access, and random access communication. The proposed nested code employs L decoding times $n_{1}, n_{2}, \ldots, n_{L}$ for the point-to-point and multiple access channels and KL decoding times $\left\{n_{k, \ell}: 1 \leq k \leq K, 1 \leq \ell \leq L\right\}$ for the random access channel with at most K active transmitters; in the latter case, decoding times $n_{k, \ell}, 1 \leq \ell \leq L$ are reserved for decoding in the scenario where the decoder believes that the number of active transmitters is k. The code has a nested structure, i.e., codewords used to decode messages from k active transmitters are prefix of codewords used to decode messages from $k+1$ active transmitters. The code employs single-bit, scheduled feedback from the receiver to the transmitters at each potential decoding time to inform the transmitters whether or not it is able to decode. Transmitters cease transmission, thereby truncating their codewords, when no further transmissions are required by the decoder. The choice of decoding times is optimized to minimize the expected decoding time subject to an error probability constraint, and second order achievability bounds are derived.
嵌套稀疏反馈代码点对点,多址,和随机接入信道
本文研究了点对点、多址和随机存取通信中离散无记忆信道的变长反馈码。所提出的嵌套码对点对点和多接入信道采用L解码次数$n_{1}, n_{2}, \ldots, n_{L}$,对最多K个有源发射机的随机接入信道采用KL解码次数$\left\{n_{k, \ell}: 1 \leq k \leq K, 1 \leq \ell \leq L\right\}$;在后一种情况下,在解码器认为活动发射机数量为k的情况下,保留解码次数$n_{k, \ell}, 1 \leq \ell \leq L$用于解码。编码具有嵌套结构,即用于解码k个活动发射机消息的码字是用于解码$k+1$个活动发射机消息的码字的前缀。所述码在每个可能的解码时间采用从接收机到发送器的单比特预定反馈,以通知发送器它是否能够解码。当解码器不需要进一步传输时,发送器停止传输,从而截断其码字。在误差概率约束下,优化了译码时间的选择,使期望译码时间最小化,并推导了二阶可达性边界。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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