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Anytime Capacity of a Class of Markov Channels

机译:一类马尔可夫通道的随时容量

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Several new expressions for the anytime capacity of Sahai and Mitter are presented for a time-varying rate-limited channel with noiseless output feedback. These follow from a novel parametric characterization obtained in the case of Markov time-varying rate channels, and include an explicit formula for the r-bit Markov erasure channel, as well as formulas for memoryless rate processes including Binomial, Poisson, and Geometric distributions. Beside the memoryless erasure channel and the additive white Gaussian noise channel with input power constraint, these are the only cases where the anytime capacity has been computed. At the basis of these results is the study of the threshold function for m-th moment stabilization of a scalar linear system controlled over a Markov time-varying digital feedback channel that depends on m and on the channel's parameters. This threshold is shown to be a continuous and strictly decreasing function of m and to have as extreme values the Shannon capacity and the zero-error capacity as m tends to zero and infinity, respectively. Its operational interpretation is that of achievable communication rate, subject to a reliability constraint.
机译:针对具有无噪声输出反馈的时变速率受限信道,提出了Sahai和Mitter随时容量的几个新表达式。这些是从在Markov时变速率信道的情况下获得的新颖参数表征得出的,并包括r位Markov擦除信道的显式公式,以及包括二项式,泊松和几何分布的无记忆速率过程的公式。除了具有输入功率限制的无记忆擦除通道和加性高斯白噪声通道以外,这是仅计算了随时容量的情况。基于这些结果,研究了在依赖于m和通道参数的Markov时变数字反馈通道上控制的标量线性系统的m阶矩稳定的阈值函数。该阈值被证明是m的连续且严格减小的函数,并且随着m趋于零和无穷大,其香农容量和零误差容量作为极值。它的操作解释是可达到的通信速率,受可靠性约束。

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