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An auto-calibration method for spatially and temporally correlated noncircular sources in unknown noise fields

机译:未知噪声场中时空相关非圆形源的自动校准方法

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摘要

Angularly dependent gain and phase uncertainties are produced by the combined effects of multiple sensor errors. This paper proposes a direction-finding method for noncircular signals in the presence of angularly dependent gain/phase errors, which utilizes instrumental sensors to achieve auto-calibration and relies on an improved alternating projection procedure. By applying the principle of the extended 2-sided instrumental variable signal subspace fitting algorithm, the proposed method is effective for separating spatially and temporally correlated noncircular sources from the unknown colored (i.e., spatially correlated) noise. Considering that modeling errors of instrumental sensors are frequently encountered in practice, this paper also presents a theoretical derivation for the closed-form expression of the mean square error of the estimation under the influence of modeling errors of instrumental sensors in the first-order analysis. Finally, the results of two series of simulations are demonstrated. The first series of simulations verifies the effectiveness of the proposed auto-calibration method, and shows that noncircularity and temporal correlation of sources are informative for enhancing the calibration performance of our method. The results also prove that the proposed method performs better than the instrumental sensor method when applied to spatially and temporally correlated noncircular sources. Moreover, this performance advantage of our method is more prominent when signal-to-noise ratio is low, or in spatially correlated noise fields. The second series of simulations validates the theoretical prediction, and thus our statistical analysis has a high predictive value for calibration performance of the proposed method under the influence of modeling errors.
机译:角度相关的增益和相位不确定性是由多个传感器误差的综合影响产生的。本文提出了一种在角度相关的增益/相位误差存在的情况下非圆形信号的测向方法,该方法利用仪器传感器实现自动校准,并依靠一种改进的交替投影程序。通过应用扩展的两面仪器可变信号子空间拟合算法的原理,所提出的方法对于从未知彩色(即,空间相关)噪声中分离出空间和时间相关的非圆形源是有效的。考虑到仪器传感器的建模误差在实践中经常遇到,本文还针对一阶分析中仪器传感器的建模误差的影响,给出了估计均方误差的封闭形式的理论推导。最后,演示了两个系列的仿真结果。第一系列仿真验证了所提出的自动校准方法的有效性,并表明源的非圆形度和时间相关性对于增强我们的方法的校准性能是有益的。结果还证明,该方法应用于空间和时间相关的非圆形源时,其性能优于仪器传感器方法。此外,当信噪比低或在空间相关的噪声场中时,我们方法的性能优势更加突出。第二系列仿真验证了理论预测,因此我们的统计分析对于模型误差影响下所提出方法的校准性能具有较高的预测价值。

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