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Statistical characterization of error sequences and its applications to error control

机译:误差序列及其应用于错误控制的统计表征

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Average bit error rate is not a satisfactory descriptive feature for code evaluation, because it cannot precisely distinguish between the random and bursty natures inherent in error occurrences. In this paper we report new results of exploiting the statistical characterization of error sequences in the design of error control for mobile radio communications. For tracking the nonstationary evolution of error sequences, Gilbert's (1960) model is considered here as a model representative of real channel behavior. We first employ the simulated annealing technique to extract the statistical parameters that are required for descriptive modeling of the error sequences. To exploit this through the adaptive coding system, we also construct a class of cyclic codes by using the least common multiple of the generator polynomials of both the BCH and Fire codes.
机译:平均误码率不是代码评估的令人满意的描述性功能,因为它无法精确区分错误发生中固有的随机和突发自然。在本文中,我们报告了利用误差序列的统计表征在移动无线电通信的错误控制中的统计表征的新结果。为了跟踪误差序列的非间断演变,Gilbert(1960)模型被认为是代表实际信道行为的模型。我们首先采用模拟退火技术来提取误差序列的描述性建模所需的统计参数。为了通过自适应编码系统利用这一点,我们还通过使用BCH和消防码的发电机多项式的最小常见倍数来构造一类循环码。

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