Interpolation methods for vertical linear array element localization

T. K. Chandrayadula, K. Wage
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引用次数: 5

Abstract

Array element localization is crucial for applications such as ocean acoustic tomography. Loss of navigation data makes it difficult to compensate for array motion when implementing operations such as mode filtering or beamforming. This paper presents a method for estimating missing array navigation data using an empirical orthogonal function (EOF) model. The method can be applied to estimate the location of some vertical array elements based on the location of the other elements. It assumes that second order statistics can be estimated from a set of navigation measurements for the full array. The paper applies the EOF-based method to estimate missing navigation data for the long range ocean acoustic propagation experiment (LOAPEX). The results are evaluated by examining how the errors in mooring motion estimation affect mode processing. In particular the paper analyzes the degradation in array gain and the errors in time of arrival for the low order modes. The error statistics indicate that use of the EOF method has a negligible effect on mode processing.
垂直线阵元素定位的插值方法
阵列单元定位对于海洋声层析成像等应用至关重要。导航数据的丢失使得在执行模式滤波或波束形成等操作时难以补偿阵列运动。提出了一种利用经验正交函数(EOF)模型估计阵列导航数据缺失的方法。该方法可用于根据其他元素的位置估计某些垂直阵列元素的位置。它假设二阶统计量可以从整个阵列的一组导航测量中估计出来。本文将基于eofs的方法应用于远程海洋声传播实验(LOAPEX)中缺失导航数据的估计。通过检验系泊运动估计误差对模式处理的影响,对结果进行了评价。重点分析了低阶模态的阵列增益衰减和到达时间误差。误差统计表明,使用EOF方法对模态处理的影响可以忽略不计。
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