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Robust transmission of MELP-compressed speech: an illustrative example of joint source-channel decoding

机译:MELP压缩语音的鲁棒传输:联合源信道解码的说明性示例

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摘要

A mixed-excitation linear predictive (MELP) speech coder was selected as the US federal standard for 2400 b/s speech compression. This paper examines the quality of MELP-compressed speech when transmitted over noisy communication channels in conjunction with a variety of error-control schemes. The focus is on channel decoders that exploit the "residual redundancy" inherent in the MELP bitstream. This residual redundancy, which is manifested by the correlation in time and the nonuniform distribution of various MELP parameters, can be quantified by modeling the parameters as one-step Markov chains and computing the entropy rate of the Markov chains based on the relative frequencies of transitions. Moreover, this residual redundancy can be exploited by an appropriately "tuned" channel decoder to provide substantial coding gain when compared with decoders that do not exploit it. Channel coding schemes include conventional binary convolutional codes and iteratively-decoded parallel concatenated convolutional (turbo) codes.
机译:选择了混合激励线性预测(MELP)语音编码器作为2400 b / s语音压缩的美国联邦标准。本文结合各种错误控制方案,研究了在嘈杂的通信信道上传输时,MELP压缩语音的质量。重点是利用MELP比特流中固有的“剩余冗余”的通道解码器。这种残余冗余由时间的相关性和各种MELP参数的不均匀分布所体现,可以通过将参数建模为一步式马尔可夫链并根据转变的相对频率计算马尔可夫链的熵率来量化。此外,当与不利用这种残余冗余的解码器相比时,可以通过适当地“调谐”的信道解码器来利用这种残余冗余,以提供可观的编码增益。信道编码方案包括常规的二进制卷积码和迭代解码的并行级联卷积(turbo)码。

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