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Analysis of adaptive GBN schemes in a Gilbert-Elliott channel and optimisation of system parameters

机译:Gilbert-Elliott信道中的自适应GBN方案分析和系统参数优化

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摘要

In this article, an adaptive go-back-N ARQ scheme is analyzed and optimized in a time-varying channel environment with unreliable feedback. Two-state Markov chains, known as Gilbert-Elliott channel models, are assumed for both forward and return channels. The adaptivity of the scheme is based on varying the number of copies of a packet that are sent at each transmission attempt. The scheme has two design parameters. They are associated with detecting changes in the forward channel state. The performance of the adaptive scheme is measured by its average throughput, which is upper-bounded by the throughput of the so-called ideal adaptive scheme. This upper bound is very useful in the optimization of the design parameters. The effect of round-trip delay and the forward channel variation rate on the optimal parameter values is studied, as well as the effect of the return channel characteristics on both the performance of the scheme and on the optimization results.
机译:在本文中,在时变信道环境中具有不可靠反馈的情况下,分析并优化了自适应后退N ARQ方案。假定前向和返回通道均采用两态马尔可夫链,称为吉尔伯特-艾略特通道模型。该方案的适应性基于改变每次发送尝试时发送的分组副本的数量。该方案具有两个设计参数。它们与检测前向信道状态的变化相关联。自适应方案的性能通过其平均吞吐量来衡量,而平均吞吐量则以所谓的理想自适应方案的吞吐量为上限。此上限对于优化设计参数非常有用。研究了往返延迟和前向信道变化率对最佳参数值的影响,以及返回信道特性对方案性能和优化结果的影响。

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