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首页> 外文期刊>EURASIP journal on advances in signal processing >Frequency and 2D Angle Estimation Based on a Sparse Uniform Array of Electromagnetic Vector Sensors
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Frequency and 2D Angle Estimation Based on a Sparse Uniform Array of Electromagnetic Vector Sensors

机译:基于电磁矢量传感器稀疏均匀阵列的频率和二维角度估计

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摘要

We present an ESPRIT-based algorithm that yields extended-aperture two-dimensional (2D) arrival angle and carrier frequency estimates with a sparse uniform array of electromagnetic vector sensors. The ESPRIT-based frequency estimates are first achieved by using the temporal invariance structure out of the two time-delayed sets of data collected from vector sensor array. Each incident source's coarse direction of arrival (DOA) estimation is then obtained through the Poynting vector estimates (using a vector cross-product estimator). The frequency and coarse angle estimate results are used jointly to disambiguate the cyclic phase ambiguities in ESPRIT's eigenvalues when the intervector sensor spacing exceeds a half wavelength. Monte Carlo simulation results verified the effectiveness of the proposed method.
机译:我们提出了一种基于ESPRIT的算法,该算法利用电磁矢量传感器的稀疏均匀阵列产生扩展孔径的二维(2D)到达角和载频估计。首先,通过使用从矢量传感器阵列收集的两组时间延迟数据中的时间不变性结构,来实现基于ESPRIT的频率估计。然后,通过Poynting矢量估计(使用矢量叉积估计器)获得每个入射源的粗略到达方向(DOA)估计。当矢量传感器间距超过一半波长时,频率和粗略角度估计结果将共同用于消除ESPRIT特征值中的循环相位歧义。蒙特卡洛仿真结果验证了该方法的有效性。

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