Algorithms for Real-Valued Noisy Damped Sinusoid Parameter Estimation

Daniel Belega;Dario Petri
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引用次数: 2

Abstract

In this article, an improved version of three state-of-the-art interpolated discrete-time Fourier transform (IpDTFT) algorithms for the estimation of the frequency and the damping factor of noisy damped sinusoids is proposed. Sinusoid amplitude and phase are also estimated. Improvement is obtained by both compensating the effect on the estimated parameters of the spectral leakage from the fundamental image component and minimizing the estimator variance through a suitable selection of the interpolation points. The obtained estimates are then further improved by applying a linear signal fit (LSF) algorithm. The accuracies of the proposed algorithms are compared with each other and with the related Cramér–Rao lower bound through computer simulations. The required computational times are also briefly analyzed in order to assess the algorithms usefulness in real-time applications.
实值噪声阻尼正弦参数估计算法
在本文中,提出了三种最先进的插值离散时间傅立叶变换(IpDTFT)算法的改进版本,用于估计有噪声阻尼正弦曲线的频率和阻尼因子。还估计了正弦振幅和相位。通过补偿来自基本图像分量的光谱泄漏对估计参数的影响以及通过适当选择插值点来最小化估计器方差来获得改进。然后通过应用线性信号拟合(LSF)算法来进一步改进所获得的估计。通过计算机模拟,将所提出的算法的精度相互比较,并与相关的Cramér–Rao下界进行比较。还简要分析了所需的计算时间,以评估算法在实时应用中的有用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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