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Iterative joint source-channel decoding of speech spectrum parameters over an additive white Gaussian noise channel

机译:加性高斯白噪声信道上语音频谱参数的迭代联合源信道解码

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In this paper, we show how the Gaussian mixture modeling framework used to develop efficient source encoding schemes can be further exploited to model source statistics during channel decoding in an iterative framework to develop an effective joint source-channel decoding scheme. The joint probability density function (PDF) of successive source frames is modeled as a Gaussian mixture model (GMM). Based on previous work, the marginal source statistics provided by the GMM is used at the encoder to design a low-complexity memoryless source encoding scheme. The source encoding scheme has the specific advantage of providing good estimates to the probability of occurrence of a given source code-point based on the GMM. The proposed iterative decoding procedure works with any channel code whose decoder can implement the soft-output Viterbi algorithm that uses a priori information (APRI-SOVA) or the BCJR algorithm to provide extrinsic information on each source encoded bit. The source decoder uses the GMM model and the channel decoder output to provide a priori information back to the channel decoder. Decoding is done in an iterative manner by trading extrinsic information between the source and channel decoders. Experimental results showing improved decoding performance are provided in the application of speech spectrum parameter compression and communication.
机译:在本文中,我们展示了如何在迭代框架中进一步开发用于开发有效源编码方案的高斯混合建模框架,以在信道解码期间对源统计进行建模,以开发有效的联合源-信道解码方案。连续源帧的联合概率密度函数(PDF)被建模为高斯混合模型(GMM)。基于以前的工作,由GMM提供的边际源统计信息在编码器处用于设计低复杂度的无内存源编码方案。源编码方案的特殊优势在于,可以基于GMM为给定源代码点的发生概率提供良好的估计。提议的迭代解码过程可与任何通道代码配合使用,该通道的解码器可以实现使用先验信息(APRI-SOVA)或BCJR算法的软输出维特比算法,以在每个源编码位上提供外部信息。源解码器使用GMM模型和信道解码器输出将先验信息提供回信道解码器。通过在源解码器和通道解码器之间交换外部信息,以迭代方式完成解码。在语音频谱参数压缩和通信的应用中提供了显示改进的解码性能的实验结果。

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