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Finite-state Markov modeling of correlated Rician-fading channels

机译:相关Rician衰落信道的有限状态马尔可夫建模

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摘要

Stochastic properties of the binary channel that describe the successes and failures of the transmission of a modulated signal over a time-correlated flat-fading channel are considered for investigation. This analysis is employed to develop Kth-order Markov models for such a burst channel. The order of the Markov model that generates accurate analytical models is estimated for a broad range of fading environments. The parameterization and accuracy of an important class of hidden Markov models, known as the Gilbert-Elliott channel (GEC), are also investigated. Fading rates are identified in which the Kth-order Markov model and the GEC model approximate the fading channel with similar accuracy. The latter model is useful for approximating slowly fading processes, since it provides a more compact parameterization.
机译:考虑研究描述在时间相关的平坦衰落信道上传输调制信号的成功和失败的二进制信道的随机特性。该分析被用来为这种突发信道开发K阶马尔可夫模型。对于广泛的衰落环境,估计生成精确分析模型的马尔可夫模型的阶数。还研究了一类重要的隐式马尔可夫模型的参数化和准确性,这些模型称为吉尔伯特-埃利奥特通道(GEC)。确定衰落速率,其中K阶马尔可夫模型和GEC模型以相似的精度近似衰落信道。后一种模型可用于近似缓慢的衰落过程,因为它提供了更紧凑的参数设置。

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