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Adaptive multiple-transmission block error control coding based on a minimal hidden Markov model of the HF error channel

机译:基于HF误差通道的最小隐马尔可夫模型的自适应多传输块误差控制编码

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Presents a new algorithm for estimating parameters in a 2-binary symmetric channel-state hidden Markov model for the HF radio channel, based on a 2D optimisation by binary search of "bad" state parameters. Excellent modelling accuracy has been obtained, as shown by close fits between distributions of various error statistics for actual and simulated data. The performance of the multiple transmission scheme without FEC and without adaptivity is not impressive. FEC alone and adaptivity alone offer some advantages, but these seem too small to justify the increase in complexity. The best performance is obtained when both FEC and adaptivity are employed: with triple-error correction, single-repetition in the "good" state and triple-repetition in the "bad" state, a respectable block throughput of 0.69 (bit throughput of 0.36) is achieved.
机译:呈现了一种新的算法,用于估计HF无线电信道的2二进制对称信道状态隐马尔可夫模型中的参数,基于通过二进制搜索“坏”状态参数的二进制优化。已经获得了出色的建模精度,如实际和模拟数据的各种错误统计数据的分布所示。没有FEC的多传输方案的性能和没有适应性的不令人印象深刻。单独的FEC和单独的适应性提供了一些优点,但这些似乎太小,无法证明复杂性的增加。当使用FEC和适应性时,获得最佳性能:具有三误差校正,“良好”状态和“坏”状态下的三重重复,可观的块吞吐量为0.69(位吞吐量为0.36 ) 已完成。

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