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首页> 外文期刊>Oceanic Engineering, IEEE Journal of >Gain and Phase Autocalibration of Large Uniform Rectangular Arrays for Underwater 3-D Sonar Imaging Systems
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Gain and Phase Autocalibration of Large Uniform Rectangular Arrays for Underwater 3-D Sonar Imaging Systems

机译:水下3-D声纳成像系统的大型均匀矩形阵列的增益和相位自动校准

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摘要

In this paper, a new calibration method for gain and phase errors in large uniform rectangle arrays is proposed for underwater 3-D sonar imaging systems. It requires only one calibrator source at an unknown position in the far field. An efficient and speedy three-step-iteration algorithm is performed first to provide a robust direction-of-arrival (DOA) estimator in the presence of gain and phase errors. It then follows with the gain and phase errors estimation using a spatial matched filter. Finally, a maximum a posteriori (MAP) exercise is executed to further adjust the estimated phase parameters and the source direction. The statistical performance of the proposed algorithm will be demonstrated and compared to representative methods. It will be shown that the proposed method is computationally effective and asymptotically efficient in Monte Carlo simulations.
机译:本文提出了一种用于水下3-D声纳成像系统的大型均匀矩形阵列中增益和相位误差的校准方法。它仅需要一个校准源,即可在远场中的未知位置进行。首先执行有效且快速的三步迭代算法,以在存在增益和相位误差的情况下提供鲁棒的到达方向(DOA)估计器。然后使用空间匹配滤波器进行增益和相位误差估计。最后,执行最大后验(MAP)演习以进一步调整估计的相位参数和源方向。将证明所提出算法的统计性能并将其与代表性方法进行比较。结果表明,所提出的方法在蒙特卡洛模拟中是计算有效且渐近有效的。

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