Variable-length Coding Error Exponents for the AWGN Channel with Noisy Feedback at Zero-Rate

K. Palacio-Baus, N. Devroye
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引用次数: 2

Abstract

A one-way additive white Gaussian noise (AWGN) channel with active feedback sent over another AWGN feedback channel is considered. Achievable error exponents are presented in the finite message / zero-rate regime for a variable length coding (VLC) scheme. This coding scheme uses a form of round-robin scheduling of messages, and a simplex-based feedback code to obtain reliable feedback and remain synchronized, despite the noise in the feedback link. Our results show that this new VLC scheme under an almost-sure power constraint achieves an error exponent similar to an achievable exponent attained using a fixed block length scheme under a much more relaxed expected block power constraint, and is larger than that achieved by schemes without feedback.1
零速率噪声反馈AWGN信道的变长编码误差指数
考虑了一个单向加性高斯白噪声(AWGN)信道,该信道的主动反馈通过另一个AWGN反馈信道发送。给出了可变长度编码(VLC)方案在有限消息/零速率下可实现的错误指数。该编码方案使用消息的循环调度形式和基于simplex的反馈代码来获得可靠的反馈并保持同步,尽管反馈链路中存在噪声。结果表明,在几乎确定的功率约束下,这种新的VLC方案获得的误差指数与使用固定块长度方案在更宽松的期望块功率约束下获得的可实现指数相似,并且比没有反馈的方案所获得的误差指数大
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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