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首页> 外文期刊>IEEE Journal of Oceanic Engineering >Differential phase estimation with the SeaMARCII bathymetric sidescan sonar system
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Differential phase estimation with the SeaMARCII bathymetric sidescan sonar system

机译:使用SeaMARCII测深侧扫声纳系统进行差分相位估计

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摘要

A maximum-likelihood estimator is used to extract differential phase measurements from noisy seafloor echoes received at pairs of transducers mounted on either side of the SeaMARC II bathymetric sidescan sonar system. Carrier frequencies for each side are about 1 kHz apart, and echoes from a transmitted pulse 2 ms long are analyzed. For each side, phase difference sequences are derived from the full complex data consisting of base-banded and digitized quadrature components of the received echoes. With less bias and a lower variance, this method is shown to be more efficient than a uniform mean estimator. It also does not exhibit the angular or time ambiguities commonly found in the histogram method used in the SeaMARC II system. A figure for the estimation uncertainty of the phase difference is presented, and results are obtained for both real and simulated data. Based on this error estimate and an empirical verification derived through coherent ping stacking, a single filter length of 100 ms is chosen for data processing applications.
机译:最大似然估计器用于从安装在SeaMARC II水深侧扫声纳系统两侧的换能器对接收的嘈杂的海底回波中提取差分相位测量值。每一侧的载波频率相距约1 kHz,并分析了来自2 ms长的发射脉冲的回波。对于每一侧,相位差序列是从包含接收回波的基带和数字化正交分量的完整复数数据中得出的。具有较小的偏差和较低的方差,该方法比统一的均值估计器更有效。它也没有展现在SeaMARC II系统中使用的直方图方法中常见的角度或时间模糊度。给出了相位差估计不确定性的数字,并获得了实际数据和模拟数据的结果。基于该误差估计和通过相干ping堆栈得出的经验验证,为数据处理应用选择了100 ms的单个滤波器长度。

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