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On the capacity of the noisy runlength channel

机译:关于嘈杂的游程通道的容量

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摘要

The authors consider the model for runlength coded systems of P.H. Siegel (1982) that is based on peak or edge detection. The model does not attempt to account for failures of the qualifying circuit; it is assumed that every transition is successfully declared (i.e., no missing or false qualifiers). In this model it is the error in the estimate of the location of the transition that introduces uncertainty at the channel output. The model is motivated by the problem of pulse location in white Gaussian noise. Through a series of lemmas and theorems, bounds on the capacity of this model are obtained. These bounds are evaluated and used to suggest that improvements in storage capacity are possible through the use of codes with designed noise tolerance.
机译:作者考虑了P.H游程编码系统的模型。 Siegel(1982)基于峰值或边缘检测。该模型不试图说明合格电路的故障;假设每个转换都已成功声明(即没有丢失或错误的限定词)。在此模型中,过渡位置估计中的误差在通道输出端引入了不确定性。该模型是由高斯白噪声中的脉冲位置问题引起的。通过一系列引理和定理,可以确定该模型的容量范围。对这些界限进行了评估,并暗示通过使用具有设计噪声容限的代码可以提高存储容量。

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