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Computationally efficient 2D direction finding and polarization estimation with arbitrarily spaced electromagnetic vector sensors at unknown locations using the propagator method

机译:利用传播器方法在未知位置使用任意间隔的电磁矢量传感器进行高效的二维方向查找和极化估计

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摘要

This paper proposes a computationally efficient method for estimating angle of arrival and polarization parameters of multiple farfield narrowband diversely polarized electromagnetic sources, using arbitrarily spaced electromagnetic vector sensors at unknown locations. The electromagnetic vector sensor is six-component in composition, consisting of three orthogonal electric dipoles plus three orthogonal magnetic loops, collocating in space. The presented method is based on an estimation method named propagator, which requires only linear operations but no eigenvalue decomposition or singular value decomposition into the signal and noise subspaces, to estimate the scaled electromagnetic vector sensors' steering vectors and then to estimate the azimuth arrival angle, the elevation arrival angle, and the polarization parameters. Comparing with its ESPRIT counterpart [K.T. Wong, M.D. Zoltowski, Closed-form direction finding and polarization estimation with arbitrarily spaced electromagnetic vector-sensors at unknown locations, IEEE Trans. Antennas Propagat. 48 (5) (2000) 671-681], the propagator method has its computational complexity reduced by this ratio: the number of sources to sextuple the number of vector sensors. Simulation results show that at high and medium signal-to-noise ratio, the proposed propagator method's estimation accuracy is similar to its ESPRIT counterpart.
机译:本文提出了一种在未知位置使用任意间隔的电磁矢量传感器来估算多个远场窄带多样极化电磁源的到达角和极化参数的有效计算方法。电磁矢量传感器由六部分组成,由三个正交的电偶极子和三个正交的磁环组成,并在空间中排列。提出的方法基于一种称为传播器的估计方法,该方法仅需要线性运算,而无需将特征值分解或奇异值分解到信号和噪声子空间中,从而估计缩放后的电磁矢量传感器的转向矢量,然后估计方位角到达角,仰角到达角和极化参数。与ESPRIT同类产品比较[K.T. Wong,M.D. Zoltowski,在未知位置使用任意间隔的电磁矢量传感器进行闭式测向和极化估计,IEEE Trans。天线宣传。 48(5)(2000)671-681],传播器方法的计算复杂度降低了这个比率:源数乘以六元向量传感器。仿真结果表明,在高中信噪比的情况下,所提传播方法的估计精度与ESPRIT方法相似。

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