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An Investigation of Block Coding for Laplacian Noise

机译:拉普拉斯噪声的块编码研究

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摘要

In many communication channels, the ambient disturbance is known through experimental evidence as well as theoretical considerations to deviate strongly from the Gaussian model. In order to evaluate the performance of digital signaling in such channels, the non-Gaussian noise must be properly modeled. The Laplace distribution is used here to model the non-Gaussian noise and study the performance of communication systems employing block data transmission in the presence of impulsive noise. Analytical expressions for assessing codeword error probability and bit error probability are derived for hard-decision decoders, soft-decision decoders and optimum maximum likelihood detectors in both nonfading and quasi-static Rayleigh fading scenarios. Numerical results are presented for different codes, block sizes and error rate levels. The characteristics of error performance are discussed for both nonfading and quasi-static Rayleigh fading channels.
机译:在许多通信渠道中,通过实验证据以及从理论上考虑到与高斯模型有很大偏差的环境干扰是已知的。为了评估此类信道中数字信令的性能,必须对非高斯噪声进行适当建模。拉普拉斯分布在此用于建模非高斯噪声,并研究在存在脉冲噪声的情况下采用块数据传输的通信系统的性能。在非衰落和准静态瑞利衰落情况下,针对硬判决解码器,软判决解码器和最佳最大似然检测器,得出了用于评估码字错误概率和比特错误概率的解析表达式。给出了针对不同代码,块大小和错误率级别的数值结果。讨论了非衰落和准静态瑞利衰落信道的误码性能特征。

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