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Optimal multistage vector quantization of LPC parameters over noisy channels

机译:噪声通道上LPC参数的最优多级矢量量化

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The direct use of vector quantization (VQ) to encode LPC parameters in a communication system suffers from the following two limitations: 1) complexity of implementation for large vector dimensions and codebook sizes and 2) sensitivity to errors in the received indices due to noise in the communication channel. In the past, these issues have been simultaneously addressed by designing channel matched multistage vector quantizers (CM-MSVQ). A sub-optimal sequential design procedure has been used to train the codebooks of the CM-MSVQ. In this paper, a novel channel-optimized multistage vector quantization (CO-MSVQ) codec is presented, in which the stage codebooks are jointly designed. The proposed codec uses a source and channel-dependent distortion measure to encode line spectral frequencies derived from segments of a speech signal. Extensive simulation results are provided to demonstrate the consistent reduction in both the mean and the variance of the spectral distortion obtained using the proposed codec relative to the conventional sequentially designed CM-MSVQ. Furthermore, the perceptual quality of the reconstructed speech using the proposed codec was found to be better than that obtained using the sequentially designed CM-MSVQ.
机译:在通信系统中直接使用矢量量化(VQ)编码LPC参数存在以下两个局限性:1)大矢量尺寸和码本大小的实现复杂性,以及2)对由于噪声引起的接收索引错误的敏感性沟通渠道。过去,通过设计通道匹配的多级矢量量化器(CM-MSVQ)同时解决了这些问题。次最佳顺序设计过程已用于训练CM-MSVQ的代码簿。本文提出了一种新颖的信道优化多级矢量量化(CO-MSVQ)编解码器,其中阶段代码簿是联合设计的。所提出的编解码器使用源和信道相关的失真度量来编码从语音信号的片段中导出的线频谱频率。提供了广泛的仿真结果,以证明相对于常规顺序设计的CM-MSVQ,使用建议的编解码器获得的频谱失真的均值和方差均不断减小。此外,发现使用提议的编解码器的重构语音的感知质量比使用顺序设计的CM-MSVQ的感知质量更好。

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