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General second-order covariance of Gaussian maximum likelihood estimates applied to passive source localization in fluctuating waveguides

机译:高斯最大似然估计的一般二阶协方差适用于波动波导中的被动源定位

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摘要

A method is provided for determining necessary conditions on sample size or signal to noise ratio (SNR) to obtain accurate parameter estimates from remote sensing measurements in fluctuating environments. These conditions are derived by expanding the bias and covariance of maximum likelihood estimates (MLEs) in inverse orders of sample size or SNR, where the first-order covariance term is the Cramer-Rao lower bound (CRLB). Necessary sample sizes or SNRs are determined by requiring that (i) the first-order bias and the second-order covariance are much smaller than the true parameter value and the CRLB, respectively, and (ii) the CRLB falls within desired error thresholds. An analytical expression is provided for the second-order covariance of MLEs obtained from general complex Gaussian data vectors, which can be used in many practical problems since (i) data distributions can often be assumed to be Gaussian by virtue of the central limit theorem, and (ii) it allows for both the mean and variance of the measurement to be functions of the estimation parameters. Here, conditions are derived to obtain accurate source localization estimates in a fluctuating oceanwaveguide containing random internal waves, and the consequences of the loss of coherence on their accuracy are quantified.
机译:提供了一种用于确定样本大小或信号到噪声比(SNR)的必要条件,以获得来自波动环境中的遥感测量的准确参数估计。通过扩大最大似然估计(MLES)的偏差和SNR的最大似然估计(MLE)的偏差和协方差来推导出这些条件,其中一阶协方差项是CRAMER-RAO下限(CRLB)。通过要求(i)一阶偏置和二阶协方差小于真实参数值和CRLB,并且(ii)CRLB落入所需的误差阈值,并且二阶偏置远远小于真正的参数值和CRLB来确定必要的样本尺寸或SNR。为从一般复杂高斯数据向量获得的MLE的二阶协方差提供了分析表达,其可以在许多实际问题中使用,因为由于中央极限定理,通常可以假设数据分布通常被假定为高斯, (ii)它允许测量的均值和方差是估计参数的功能。这里,导出条件以获得含有随机内波的波动的海洋大量的精确源定位估计,量化了对其精度的相干性丧失的后果。

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