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首页> 外文期刊>IEEE Transactions on Signal Processing >Bias Corrected PSD Estimation for an Adaptive Array With Moving Interference
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Bias Corrected PSD Estimation for an Adaptive Array With Moving Interference

机译:具有运动干扰的自适应阵列的偏置校正PSD估计

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摘要

We address the issue of computing power spectral density (PSD) estimates at the output of a beamforming sensor array in the presence of strong moving interference. It is shown that the time-varying spatial response of an adaptive beamformer (“pattern rumble”) causes estimation bias in the PSD of both the signal of interest (SOI) and noise. In applications such as radio astronomy with stringent sensitivity requirements, even small pattern variations can be problematic because the resulting higher variance noise spectrum estimates make it impossible to detect signals of interest which are many decibels below the noise floor. Distortion in beam mainlobe shape also introduces errors in SOI direction estimates. To overcome this problem, an extension of the method described in Leshem , 2000, is developed which eliminates pattern-distortion-induced PSD bias and spatial response errors over the long-term PSD averaging window. Both simulated and real data experiments demonstrate algorithm effectiveness in realizing an undistorted effective (average) beam spatial response while maintaining a low noise floor level. This algorithm will enable PSD estimation using multi-antenna sensors and adaptive interference cancellation for radio astronomy, remote sensing, and other sensitive radiometry applications where cancellation has not been feasible.
机译:我们解决在存在强移动干扰的情况下在波束成形传感器阵列的输出处计算功率谱密度(PSD)估计值的问题。结果表明,自适应波束形成器(“模式隆隆声”)随时间变化的空间响应会引起感兴趣信号(SOI)和噪声的PSD的估计偏差。在诸如具有严格灵敏度要求的射电天文学等应用中,即使很小的模式变化也可能会出现问题,因为由此产生的较高方差噪声频谱估计值使得无法检测到噪声本底以下许多分贝的目标信号。波束主瓣形状的失真还会在SOI方向估计中引入误差。为了克服这个问题,开发了在Leshem,2000中描述的方法的扩展,该方法消除了在长期PSD平均窗口上图案失真引起的PSD偏差和空间响应误差。模拟和真实数据实验都证明了算法在保持低本底噪声水平的同时,在实现不失真的有效(平均)波束空间响应方面的有效性。该算法将使用多天线传感器实现PSD估计,并在射电天文,遥感和其他不可行抵消的敏感辐射测量应用中采用自适应干扰消除。

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