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首页> 外文期刊>IEEE Transactions on Signal Processing >Applications of cumulants to array processing. II. Non-Gaussian noise suppression
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Applications of cumulants to array processing. II. Non-Gaussian noise suppression

机译:累积量在阵列处理中的应用。二。非高斯噪声抑制

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The main motivation of using higher order statistics in signal processing applications has been their insensitivity to additive colored Gaussian noise. The main objection to those methods is their possible vulnerability to non-Gaussian noise. The authors investigate the effects of non-Gaussian ambient noise on cumulant-based direction-finding systems using the interpretation for the information provided by cumulants for array processing applications described in Dogan and Mendek. they first demonstrate the suppression of uncorrelated non-Gaussian noise that has spatially varying statistics. Then, they indicate methods to suppress spatially colored non-Gaussian noise using cumulants and an additional sensor whose measurement noise component is independent of the noise components of the original array measurements. They also indicate the noise suppression properties of the virtual-ESPRIT algorithm proposed in Dogan and Mendel. In addition, they propose a method that combines second- and fourth-order statistics together in order to suppress spatially colored non-Gaussian noise. Finally, they also illustrate how to suppress spatially colored non-Gaussian noise when the additional sensor measurement is not available. Simulations are presented to verify the results.
机译:在信号处理应用中使用高阶统计量的主要动机是它们对加色的高斯噪声不敏感。这些方法的主要异议是它们可能会受到非高斯噪声的影响。作者使用多甘和门德克(Dodan and Mendek)中描述的累积量为阵列处理应用提供的信息的解释,研究了非高斯环境噪声对基于累积量的测向系统的影响。他们首先证明了对具有空间变化统计量的非相关非高斯噪声的抑制。然后,他们指出了使用累积量和附加传感器抑制空间着色的非高斯噪声的方法,该传感器的测量噪声分量与原始阵列测量的噪声分量无关。它们还表明在Dogan和Mendel中提出的虚拟ESPRIT算法的噪声抑制特性。此外,他们提出了一种将二阶和四阶统计量组合在一起的方法,以抑制空间着色的非高斯噪声。最后,它们还说明了在无法使用其他传感器测量时如何抑制空间着色的非高斯噪声。进行仿真以验证结果。

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