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Evaluation of Potential Efficiency of Speech Coding Using Different Parameters of Linear Prediction

机译:使用线性预测不同参数评估语音编码潜在效率

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摘要

The paper presents the results for estimating the potential coding efficiency of spectrum envelope waveform (SEW) of speech signals (SS) by using the linear prediction (LP) method and using different sets of alternative equivalent parameters (AEP) that include line spectral pairs/projections (LSP), line spectral frequencies (LSF), and alternative line spectral parameters of highest splitting (LSP-HS and LSF-HS). These results are derived by the proposed approach based on using the LP method for SS SEW coding with maximum frame overlap during its analysis. It includes the examination of such coding scheme as approaching an appropriate analog vector source in each of AEP spaces, the stepwise designing of an appropriate vector codebook in each of spaces with gradual increase of its size and employing the ideal scheme of vector quantization with exhaustive search at each stage. The distortions versus rate relationships have been calculated based on the results of analysis in each of AEP spaces. In addition, a generalized function is proposed for approximation of the specified relationships. The technique is presented that makes it possible in each AEP space to estimate Shannon’s lower bound, the dispersion of the Gaussian equivalent source, differential entropy, redundancy, values of the weighting constant in the generalized formula of entropy, and other entropy characteristics of coding the equivalent sources (parameters of SS SEW) in these spaces. The efficiency indicators of real and potential coding of corresponding AEP are proposed and calculated. It has been shown that in conjunction with the combination of proposed efficiency indicators, the best results demonstrate spaces of line spectral parameters of highest splitting (LSP-HS and LSF-HS).
机译:本文通过使用线性预测(LP)方法并使用包括线谱对/的不同替代等效参数(AEP)来估计语音信号波形(SS)的频谱包络波形(SS)的潜在编码效率的结果。投影(LSP),线谱频率(LSF)和最高分割(LSP-HS和LSF-HS)的替代线谱参数。这些结果由基于使用LP方法的SS缝编码,在其分析期间具有最大帧重叠的提出方法来源。它包括在每个AEP空间中接近适当的模拟矢量源的这种编码方案的检查,逐步设计在每个空间中的适当的矢量码本,其尺寸逐渐增加,并采用穷举搜索的矢量量化的理想方案在每个阶段。基于AEP空间中的每一个的分析结果,已经计算了扭曲与速率关系。另外,提出了广义函数以近似指定的关系。提出了该技术,其使得在每个AEP空间中可以估计Shannon的下限,高斯等效源的色散,差分熵,冗余,在熵的广义公式中的加权常数的值,以及编码的其他熵特性在这些空间中的等效源(SS缝的参数)。提出并计算了相应AEP的实际和潜在编码的效率指标。已经表明,结合所提出的效率指标的组合,最佳结果证明了最高分裂的线谱参数(LSP-HS和LSF-HS)的空间。

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  • 来源
    《Radioelectronics and Communications Systems》 |2020年第9期|449-464|共16页
  • 作者

    O. I. Pavlov; F. F. Dubrovka;

  • 作者单位

    National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”;

    National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”;

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  • 原文格式 PDF
  • 正文语种 eng
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