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Stochastic joint source-channel coding for low bit rate robust speech coding

机译:用于低比特率鲁棒语音编码的随机联合源信道编码

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Speech coders operating at low bit rates necessitate efficient encoding of the linear predictive coding (LPC) coefficients. In this paper, we propose a stochastic joint source-channel scheme developed for efficient and robust encoding of LPC coefficients in terms of LSF parameters. The encoding system, named LSF-SSCOVQ-RC, is an LSF encoding scheme based on a reduced complexity stochastic split vector quantizer optimized for noisy channel. For transmissions over noisy channel, we will show first that our LSF-SSCOVQ-RC encoder outperforms the conventional LSF encoder designed by the split vector quantizer (SVQ). After that, we applied the LSF-SSCOVQ-RC encoder (with weighted distance) for the robust encoding of LSF parameters of the MELP speech coder operating over a noisy channel. The simulation results will show that the proposed LSF encoder, incorporated in the MELP, ensure better performances than the original MELP MSVQ of 25 bits/frame; especially when the channel is highly disturbed.
机译:以低比特率运行的语音编码器需要对线性预测编码(LPC)系数进行有效编码。在本文中,我们提出了一种随机联合源-信道方案,该方案旨在根据LSF参数对LPC系数进行高效且鲁棒的编码。名为LSF-SSCOVQ-RC的编码系统是一种LSF编码方案,基于针对噪声信道进行了优化的,降低了复杂度的随机分裂矢量量化器。对于通过噪声信道的传输,我们将首先展示我们的LSF-SSCOVQ-RC编码器优于由分离矢量量化器(SVQ)设计的传统LSF编码器。之后,我们将LSF-SSCOVQ-RC编码器(具有加权距离)应用于在嘈杂信道上运行的MELP语音编码器的LSF参数的鲁棒编码。仿真结果表明,所提出的LSF编码器,并入MELP中,可确保比原始的MELP MSVQ(25位/帧)更好的性能;特别是在频道受到严重干扰时。

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