AWGN与脉冲噪声的turbo音频增强技术

Rohini S. Hallikar, Shweta Kulkarni, M. Uttarakumari, K. Padmaraju
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引用次数: 2

摘要

本文比较了双共振非线性(DRNL)和信号相关秩次均值(SD-ROM)的turbo音频信号增强方法的性能。这项工作的显著特点是探索使用涡轮增压方法来增强元音和辅音等信号,这是以前没有做过的。元音和辅音是任何语言的基础,为这项工作提供了不同的维度。通过比较,可以确定哪种音频信号增强技术对人工耳蜗的信号处理部分最有用。由于turbo方法的迭代特性,使其具有较好的信号增强效果。对不同噪声(AWGN和脉冲噪声)干扰的声音进行了分析。基于相关系数、对数谱失真(LSD)、片段信噪比(SSNR)和处理后信号之间的均方误差(MSE)来评估增强效果。仿真结果表明,turbo对被AWGN干扰的信号有较好的增强作用。Turbo方法对脉冲噪声具有信号增强作用,而SD-ROM方法对脉冲噪声的处理效果更好。DRNL有助于信号增强,而不是作为一个独立的滤波器,但当组合使用形成turbo。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
AWGN and impulsive noise removal by turbo audio enhancement technique
This paper gives a performance comparison of turbo method of audio signal enhancement with Dual Resonance Non Linear (DRNL) and Signal Dependent Rank Order Mean(SD-ROM). The salient feature of the work is to explore the usage of turbo method for enhancement of signals like vowels and consonants which was not done earlier for this method. Vowels and consonants being the basics of any language, give a different dimension to this work. From the comparison it can be decided which audio signal enhancement technique can be most useful for the signal processing part of the cochlear implant. Due to the iterative nature of turbo method, it gives better signal enhancement. The results have been compiled for sounds corrupted by different noises namely AWGN and impulsive noise. Enhancement is evaluated based on the correlation coefficient, Log Spectral Distortion (LSD), Segmental Signal to Noise Ratio (SSNR) and Mean Square Error (MSE) between the clean signal and the processed signal. Simulation results confirm that, turbo helps in better enhancement for signals corrupted by AWGN. Turbo method provides signal enhancement for impulsive noise but SD-ROM performs better for impulsive noise. DRNL contributes in signal enhancement not as a standalone filter but when used in combination to form turbo.
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