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ESPRIT-based 2-D direction finding with a sparse uniform array of electromagnetic vector sensors

机译:基于ESPRIT的二维方向测向,具有电磁矢量传感器的稀疏均匀阵列

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摘要

Aperture extension (interferometry baseline extension) is achieved in this novel ESPRIT-based two-dimensional (2-D) arrival angle estimation scheme using a sparse (a.k.a., thin or thinned) uniform rectangular array of electromagnetic vector sensors spaced much farther apart than a half-wavelength. An electromagnetic vector sensor is composed of six spatially co-located, orthogonally oriented, diversely polarized antennas, distinctly measuring all six electromagnetic-field components of an incident multisource wavefield. Each incident source's direction of arrival (DOA) is estimated from the source's electromagnetic-field vector component and serves as a coarse reference to disambiguate the cyclic phase ambiguities in ESPRIT's eigenvalues when the intervector sensor spacing exceeds a half wavelength. Simulations demonstrate the significant performance gain realizable by this method for radar and wireless mobile fading-channel communications.
机译:在这种新颖的基于ESPRIT的二维(2-D)到达角估计方案中,使用了稀疏(又称薄,薄或变薄)的电磁矢量传感器均匀矩形阵列,其孔径远比半波长。电磁矢量传感器由六个在空间上位于同一位置,正交取向,不同极化的天线组成,分别测量入射多源波场的所有六个电磁场分量。每个入射源的到达方向(DOA)是从源的电磁场矢量分量估算的,并用作在矢量传感器间距超过一半波长时消除ESPRIT特征值中的循环相位模糊性的粗略参考。仿真表明,这种方法可实现雷达和无线移动衰落信道通信的显着性能提升。

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