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Closed-form direction finding and polarization estimation with arbitrarily spaced electromagnetic vector-sensors at unknown locations

机译: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

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This paper introduces a new closed-form ESPRIT-based algorithm for multisource direction finding and polarization estimation with arbitrarily spaced electromagnetic vector-sensors whose three-dimensional (3-D) locations need not be known. The vector-sensor, already commercially available, consists of six colocated but diversely polarized antennas separately measuring all six electromagnetic-field components of an incident wavefield. ESPRIT exploits the nonspatial interrelations among the six unknown electromagnetic-field components of each source and produces from the measured data a set of eigenvalues, from which the source's electromagnetic-field vector may be estimated to within a complex scalar. Application of a vector cross-product operation to this ambiguous electromagnetic-field vector estimate produces an unambiguous estimate of that source's normalized Poynting vector, which contains as its components the source's Cartesian direction cosines. Monte Carlo simulation results verify the efficacy and versatility of this innovative scheme. This novel method maybe considered as a simplification and a refinement over Li's (1993) work.
机译:本文介绍了一种新的基于封闭式ESPRIT的新算法,该算法可使用不需要知道三维(3-D)位置的任意间隔电磁矢量传感器进行多源测向和极化估计。矢量传感器已经可以在市场上买到,它由六个并置但极化不同的天线组成,分别测量入射波场的所有六个电磁场分量。 ESPRIT利用每个源的六个未知电磁场分量之间的非空间相互关系,并从测量数据中生成一组特征值,据此可将源的电磁场矢量估计为复标量。将矢量叉积运算应用于此模棱两可的电磁场矢量估计,将对该源的归一化Poynting矢量进行一个明确的估计,该矢量包含源的笛卡尔方向余弦作为其分量。蒙特卡洛仿真结果证明了该创新方案的有效性和多功能性。这种新方法可能被认为是对Li(1993)工作的简化和完善。

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