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Detecting Gaussian Signals Using Coprime Sensor Arrays in Spatially Correlated Gaussian Noise

机译:在空间相关的高斯噪声中使用互质传感器阵列检测高斯信号

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Coprime sensor arrays (CSAs) can estimate the directions of arrival of O(MN) narrowband planewave sources using only O(M + N) sensors with the CSA product processor. All previous investigations on the product processed CSA's performance for detecting Gaussian signals assumed spatially white Gaussian noise. Considering the product and conventional delay-and-sum beamforming processors applied to the CSA geometry, this paper derives the detection gain for each processor under the deflection metric when the background noise is spatially correlated. The conditional probability distribution functions are also derived in closed form to evaluate and compare the receiver operating characteristic performances. Despite the nonlinear processing, the product processed CSA's detection performance closely rivals its conventional beamforming (CBF) counterpart, while also demonstrating greater robustness than the CBF to spatially correlated Gaussian noise.
机译:互质传感器阵列(CSA)可以仅使用带有CSA产品处理器的O(M + N)传感器来估计O(MN)窄带平面波源的到达方向。以前对产品进行的所有调查均处理了CSA在检测高斯信号方面的性能,并假设其为空间高斯白噪声。考虑到应用于CSA几何的乘积和传统的延迟和求和波束成形处理器,当背景噪声在空间上相关时,本文推导了在偏转度量下每个处理器的检测增益。条件概率分布函数也以封闭形式导出,以评估和比较接收器的工作特性性能。尽管进行了非线性处理,但是经过处理的CSA产品的检测性能与传统的波束成形(CBF)同类产品非常接近,同时在空间相关的高斯噪声方面也表现出比CBF更高的鲁棒性。

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