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An overdetermined approach to autocorrelation based spectral moment estimators for use in Doppler weather radar

机译:一种基于自相关的频谱矩估计器的超定方法,用于多普勒天气雷达

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Estimating the spectral moments of a process is commonly done through computation of the autocorrelation function from observed sample functions of the process. The common pulse-pair estimator uses estimates of the autocorrelation function at only two lag values to provide spectral mean and width estimates. The pulse-pair algorithm can be viewed as a closed system solution of a set of equations derived by a general series expansion of the complex autocorrelation function. This paper investigates the potential for reducing error in spectral moment estimators by considering computation of the autocorrelation function at additional (higher order) lags which also contain spectral information. The approach is to truncate the series expansion of the complex autocorrelation function as formulated by Passarelli (1983) to form an overdetermined system of equations and then use a least squares solution for the spectral moments of interest. The approach has been analyzed using simulated Doppler weather radar returns to represent a distributed target environment. Improvement in the error performance of spectral variance estimators is demonstrated through the application of additional autocorrelation lag estimates in an overdetermined system. The error performance is shown to be dependent upon process spectral width, the number of terms used in the series expansion, the number of samples used in the autocorrelation estimates, and the signal-to-noise ratio.
机译:通常通过根据观察到的过程样本函数计算自相关函数来估算过程的频谱矩。通用脉冲对估计器仅在两个滞后值时使用自相关函数的估计,以提供频谱均值和宽度估计。脉冲对算法可以看作是由复数自相关函数的一般级数展开而得出的一组方程的闭系统解。本文通过考虑在附加(较高阶)滞后还包含光谱信息的自相关函数的计算,研究了减少频谱矩估计器误差的潜力。该方法是截断由Passarelli(1983)提出的复数自相关函数的级数展开,以形成一个超定方程组,然后对感兴趣的频谱矩使用最小二乘解。该方法已使用模拟的多普勒天气雷达回波进行了分析,以代表分布式目标环境。通过在超定系统中应用其他自相关滞后估计,证明了频谱方差估计器的误差性能得到了改善。误差性能显示为取决于过程频谱宽度,级数展开中使用的项数,自相关估计中使用的样本数以及信噪比。

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