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A joint estimation method of azimuth, elevation, range and polarization for near field sources without pairing parameters

机译:在不配对参数的情况下对近场源的方位角,高程,范围和极化的联合估计方法

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A method based on fourth-order cumulant was presented to estimate the range, elevation, azimuth, and polarization parameters of near-field sources. The method adopted non-centra-symmetric cross array, and every sensor consisted of the orthogonal dipole-pairs with the same coordinate axis direction, which measured the x-axis and y-axis electric-field components of the near-field signals. The method constructed seven fourth-order cumulant matrixes by receiving polarized array data, and estimated the parameters according to the tripartite relationships among subspace matrixes, eigenvalue and eigenvector. The method did not require any spectral peak search and parameter pairing, voided efficiently the loss of array aperture, and can be applied to the additive Gaussian noise environment. The performance of the proposed method was verified by computer simulations.
机译:提出了一种基于四阶累积剂的方法来估计近场源的范围,高程,方位角和偏振参数。该方法采用非CINERA-对称交叉阵列,并且每个传感器由具有相同坐标轴方向的正交偶极对组成,其测量近场信号的X轴和Y轴电场分量。该方法通过接收偏振阵列数据构成七个四阶累积矩阵,并根据子空间矩阵,特征值和特征向量之间的三方关系估计参数。该方法不需要任何光谱峰值搜索和参数配对,有效地失去阵列孔径,并且可以应用于添加剂高斯噪声环境。通过计算机仿真验证了所提出的方法的性能。

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