使用线性规划的频谱增强

R. Rothacker, R. Mammone, S. Davidovici
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引用次数: 3

摘要

本文提出了一种新的光谱分析方法。该方法包括两个处理阶段。第一级用于减小噪声的方差。这一阶段的处理与许多标准的光谱估计过程相对应,这些过程涉及一种或另一种平均。本文采用自适应线增强器(ALE)实现了这一平均阶段。ALE的输出是降低了噪声方差的频谱估计,但频率分辨率较低。第二阶段的处理用于提高粗谱估计的频率分辨率。频率分辨率增强过程通过模板匹配方法完成。该方法利用线性规划方法寻找(\sin f)/函数与粗谱估计的最佳拟合。然后,(\ sinf)/函数的位置和比例因子产生底层正弦波的频率和幅度。数值结果表明,第二阶段的处理在频率精度(单音)和分辨率(双音)方面得到了明显更好的频谱估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spectrum enhancement using linear programming
In this paper a new approach to spectral analysis is presented. The method consists of two stages of processing. The first stage is used to reduce the variance of the noise. This stage of processing corresponds to many standard spectral estimation processes which involve averaging of one kind or another. This averaging stage is realized in this paper by using an adaptive line enhancer (ALE). The output of the ALE is a spectral estimate with reduced noise variance but a coarse frequency resolution. The second stage of processing is used to improve the frequency resolution of this coarse spectral estimate. The frequency resolution enhancement process is accomplished by a template matching method. The method uses Linear Programming to search for the best fit of(\sin f)/ffunctions to the coarse spectral estimate. The position and scale factors of the(\sin f)/ffunctions then yield the frequencies and amplitudes of the underlying sinusoids. The numerical results indicate that this second stage of processing gives a significantly better spectral estimate in terms of frequency accuracy (one tone) and resolution (two tone).
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