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Noise Reduction Method for Acoustic Sensor Arrays in Underwater Noise

机译:水下噪声中声传感器阵列的降噪方法

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摘要

Noise reduction capacity in sensor array signal processing is derived under the assumption of white noise, where the noise reduction is defined as the difference between the input noise power and the output noise power in this paper. However, the underwater noise mainly includes white noise and correlated noise. In this situation, the noise reduction capacity may be deteriorated considerably in actual underwater environment. To tackle this problem, a new noise reduction method, which is named imaginary delay-and-sum beamforming method, is proposed. First, the noise signals received by a sensor array are decomposed into symmetrical and asymmetrical components. Theoretically, the symmetrical component can only affect the real parts of the noise covariance matrix. Then, the real parts of the data covariance matrix are eliminated to reduce the symmetrical noise, and the beamforming is completed by using only imaginary parts. The output signal-to-noise ratio is improved and the root mean square error of the direction-of-arrival estimation is decreased. Theoretical analyses and experimental results show that the proposed method can be easily implemented to improve the noise reduction capacity in sensor array signal processing.
机译:传感器阵列信号处理中的降噪能力是在白噪声假设下得出的,本文中降噪定义为输入噪声功率与输出噪声功率之差。但是,水下噪声主要包括白噪声和相关噪声。在这种情况下,在实际的水下环境中,降噪能力可能会大大降低。为了解决这个问题,提出了一种新的降噪方法,称为虚构的延迟和求和波束形成方法。首先,由传感器阵列接收的噪声信号被分解为对称和不对称分量。从理论上讲,对称分量只能影响噪声协方差矩阵的实部。然后,消除数据协方差矩阵的实部以减少对称噪声,并且仅通过使用虚部来完成波束成形。提高了输出信噪比,并降低了到达方向估计的均方根误差。理论分析和实验结果表明,该方法可以很容易地实现,以提高传感器阵列信号处理的降噪能力。

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