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Design of single and dual-mode companding scalar quantizers based on piecewise linear approximation of the Gaussian PDF

机译:基于Paussian PDF的分段线性近似的单模和双模混沌量化器设计

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摘要

This paper proposes a novel companding quantizer design for Gaussian source by using piecewise linear approximation of the probability density function. As the optimal companding technique represents very effective tool for quantizing signals with non-linear distribution, such as speech, the lack of optimal closed-form solution for Gaussian source represents an issue that motivated us to provide an approximation model, supported with closed-form designing expressions, suitable for applications requiring low processing delays. We provide the derivation of closed-form expressions for approximate compressor and inverse compressor functions, which are used to define representation levels and boundary segments, as the optimal compandor design requires integral equations solving. Also, we analyze how the probability density function within a dual-mode framework behaves and we propose a novel model of probability density function. System performances are analyzed for various values of configuration parameters and estimated theoretical performances are compared with appropriate simulations. Moreover, the results are compared with performance of the optimal compandor to justify the usefulness of dual-mode technique and it is demonstrated that the model we propose outperforms it, making the model competitive for speech applications where the system complexity is significant or critical aspect alongside achieved performances. (C) 2020 The Franklin Institute. Published by Elsevier Ltd. All rights reserved.
机译:本文提出了一种通过使用概率密度函数的分段线性近似来提出高斯源的新颖体积化器设计。随着最佳的构装技术代表具有非线性分布的量化信号的非常有效的工具,例如语音,高斯源的缺乏最佳的闭合性解决方案代表了一个激励我们提供近似模型的问题,支持闭合形式设计表达式,适用于需要低处理延迟的应用。我们提供近似压缩机和逆压缩机函数的闭合表达式的推导,其用于定义表示级别和边界段,因为最佳体积设计需要整体方程求解。此外,我们分析了双模框架内的概率密度函数的行为,并提出了一种新颖的概率密度函数模型。分析系统性能以针对各种配置参数值进行分析,并将估计的理论性能与适当的模拟进行比较。此外,结果与最佳体积的性能进行了比较,以证明双模技术的有用性,并证明我们提出的模型优于它,使系统复杂性具有重要或关键方面的语音应用程序的模型竞争。实现表演。 (c)2020富兰克林学院。 elsevier有限公司出版。保留所有权利。

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  • 来源
    《Journal of the Franklin Institute》 |2020年第9期|5663-5679|共17页
  • 作者单位

    Univ Nis Fac Elect Engn Dept Telecommun Aleksandra Medvedeva 14 Nish 18106 Serbia;

    Univ Novi Sad Fac Tech Sci Dept Power Elect & Telecommun Engn Trg Dositeja Obradovica 6 Novi Sad 21000 Serbia;

    Univ Nis Fac Elect Engn Dept Telecommun Aleksandra Medvedeva 14 Nish 18106 Serbia;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 21:04:28

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