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首页> 外文期刊>Oceanic Engineering, IEEE Journal of >Performance Analysis of Matched-Field Source Localization Under Spatially Correlated Noise Field
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Performance Analysis of Matched-Field Source Localization Under Spatially Correlated Noise Field

机译:空间相关噪声场下匹配场源定位性能分析

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摘要

Matched-field processing (MFP) concerns estimation of source locations by exploiting full wave modeling of acoustic waveguide propagation. Typical MFP performance demonstrates a threshold behavior, that is, below some signal-to-noise ratio (SNR), the mean-square error (MSE) increases dramatically. This threshold phenomenon has been intensively investigated previously under spatially white noise field. In this paper, we develop approaches to study MFP performance in the presence of spatially correlated noises. Both the discrete interference and surface-generated noise are considered, and a so-called method of intervals errors (MIE) is derived in the context of the maximum likelihood estimate (MLE). Performance analysis of both narrowband and broadband MFP is implemented for source localization in a realistic shallow water environment. Simulation results suggest that 1) adding either spatially correlated noise increases the MLE threshold SNR compared to the case with white noise only, but effects at high SNR are different, MSE decreasing at the same rate with a point interference while decaying in a slower pace with surface-generated noises; 2) with a strong discrete interference, interference position, rather than strength, matters more in determining the MLE performance, and broadband processing effectively reduces the threshold SNR; 3) effect of the surface-generated noises is highly frequency dependent, and processing using a higher frequency would be preferred; 4) overall the surface-generated noise is more difficult to attack by an adaptive method such as the MLE.
机译:匹配场处理(MFP)涉及通过利用声波导传播的全波建模来估计源位置。典型的MFP性能表现出阈值行为,即低于某些信噪比(SNR)时,均方误差(MSE)急剧增加。先前已经在空间白噪声场下深入研究了该阈值现象。在本文中,我们开发了在存在空间相关噪声的情况下研究MFP性能的方法。考虑了离散干扰和表面产生的噪声,并在最大似然估计(MLE)的背景下得出了所谓的间隔误差方法(MIE)。进行了窄带和宽带MFP的性能分析,以便在现实的浅水环境中进行源定位。仿真结果表明:1)与仅具有白噪声的情况相比,添加任何一种与空间相关的噪声都会增加MLE阈值SNR,但是在高SNR时的效果是不同的,MSE以相同的速率下降,并带有点干扰,而衰减速度则较慢。表面产生的噪音; 2)在强烈的离散干扰下,干扰位置而不是强度对确定MLE性能至关重要,而宽带处理有效地降低了阈值SNR; 3)表面产生的噪声的影响在很大程度上取决于频率,因此使用较高频率的处理将是首选; 4)总体而言,表面生成的噪声更难通过MLE等自适应方法来消除。

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