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A self-calibration technique for direction estimation with diversely polarized arrays

机译:一种用于不同偏振阵列方向估计的自校准技术

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A self-calibration algorithm is presented for direction finding using diversely polarized arrays in the presence of sensor gain and phase uncertainties. The method jointly estimates the directions of arrival of all the sources as well as the gain and phase of each sensor in the array. The technique is based on iterating between direction estimation and gain/phase estimation. The first is accomplished by the the MUSIC algorithm and the latter by the calculation of the smallest eigenvalue of a certain matrix. A key feature of this approach is that the computation of the gain/phase coefficients does not involve search and is computationally efficient. The performance of the algorithm is illustrated by numerical examples. The Cramer-Rao bound for the joint estimation problem is derived.
机译:提出了一种自校准算法,用于在存在传感器增益和相位不确定性的情况下,使用不同偏振的阵列进行测向。该方法联合估计所有信号源的到达方向以及阵列中每个传感器的增益和相位。该技术基于方向估计和增益/相位估计之间的迭代。第一个是通过MUSIC算法实现的,第二个是通过计算某个矩阵的最小特征值来实现的。该方法的关键特征是增益/相位系数的计算不涉及搜索,并且计算效率高。数值示例说明了该算法的性能。推导了联合估计问题的Cramer-Rao界。

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