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Resolution of signal sources via spectral moment estimation

机译:通过频谱矩估计来解析信号源

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摘要

In different practical situations it is desired to estimate the number of signal sources and their positions in space or in frequency domain. The first problem is known as the detection or the order estimation and the second one as the resolution. For the resolution problem techniques such as nonlinear least squares (NLSM), high-order Yule-Walker method (HOYW), multiple signal classification (MUSIC), Pisarenko harmonic retrieval method, min-norm method, estimation of signal parameters by rotational invariance technique (ESPRIT), were proposed (Marple, 1987 and Stoica and Moses, 1997). All these high-resolution methods are based on the analysis of the signal covariance matrix. But the covariance matrix is not the only choice to represent the signal spectrum. In different applications (weather radars, synthetic aperture radar (SAR) signal processing, ultrasound imaging in medicine, atmospheric turbulence measurements) the signal spectrum can be modeled through its algebraic moments. Recently a number of efficient nonparametric methods have been proposed to estimate the algebraic spectral moments (Monakov, 1999). The presented paper is an attempt to solve the direction of arrival (DOA) problem via estimation of the algebraic spectral moments. A method proposed in the article is comparable in its accuracy with the MUSIC method. At the same time its computational burden is much lower. The method permits to estimate the signal power of sources easily to complete the full spectral line analysis. Additionally the method shows good robustness in situations when signal sources have noticeable spatial extend
机译:在不同的实际情况下,需要估计信号源的数量及其在空间或频域中的位置。第一个问题称为检测或阶次估计,第二个问题称为分辨率。对于分辨率问题技术,例如非线性最小二乘(NLSM),高阶Yule-Walker方法(HOYW),多信号分类(MUSIC),Pisarenko谐波检索方法,最小范数方法,通过旋转不变性技术估计信号参数(ESPRIT),(Marple,1987; Stoica和Moses,1997)。所有这些高分辨率方法都是基于信号协方差矩阵的分析。但是协方差矩阵不是表示信号频谱的唯一选择。在不同的应用中(天气雷达,合成孔径雷达(SAR)信号处理,医学超声成像,大气湍流测量),可以通过代数矩对信号频谱进行建模。最近,已经提出了许多有效的非参数方法来估计代数谱矩(Monakov,1999)。提出的论文是通过估计代数谱矩来解决到达方向(DOA)问题的尝试。本文提出的方法的准确性可与MUSIC方法相媲美。同时,它的计算负担要低得多。该方法可以轻松估算光源的信号功率,以完成整个光谱线分析。此外,该方法在信号源具有明显空间扩展的情况下显示出良好的鲁棒性

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