Signal Recovering Based on Fourier Analysis from Nonuniform Samples

Yukai Gao
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Abstract

This paper describes a new approach that can process nonuniformly sampled signals efficiently, in the sense the digital spectrum and signal recovering from nonuniformly sampled signal can be derived precisely. The results of research on estimation spectra of signals whose samples were taken at randomly distributed sampling instants are presented. The paper determines the conditions under which a discrete Fourier transformation spectrum estimator provides an unbiased approximation of the spectrum of the original continuous-time signal in an unlimited range of frequencies. In the research nonuniformly sampled signals is represented as the algebraic addition of impulse function. Based on the random theory, the expected value is obtained. The signal is recovered by the inverse Fourier transformation.
基于傅立叶分析的非均匀样本信号恢复
本文介绍了一种有效处理非均匀采样信号的新方法,可以精确地导出非均匀采样信号的数字频谱和恢复信号。给出了随机分布采样时刻信号估计谱的研究结果。本文确定了离散傅立叶变换谱估计器在无限频率范围内对原始连续时间信号的谱提供无偏逼近的条件。在研究中,非均匀采样信号被表示为脉冲函数的代数加法。根据随机理论,得到期望值。信号通过傅里叶反变换恢复。
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