Robust subspace technique for joint angle/Doppler estimation in /spl alpha/-stable clutter using phased fractional lower-order moments

H. Belkacemi, M. Djeddi, S. Marcos
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Abstract

We consider the problem of joint angle and Doppler estimation for space-time adaptive processing (STAP) airborne radar in non Gaussian clutter modeled as a complex symmetric alpha stable (SaS) process. We introduce a new robust MUSIC algorithm named PFLOM-MUSIC which is obtained using a new class of covariance matrix estimate based on the phased fractional lower-order moment(PFLOM). Such matrix and the subspaces spanned by its eigenvectors serve as a basis for a high-resolution angle/Doppler estimation method. The performance of the PFLOM-MUSIC is examined by comparing the estimation results with those of the sign covariance matrix estimate SCM-MUSIC (T. Liu and J. M. Mendel, Aug. 2001). Extensive Simulations demonstrate that our proposed algorithm outperforms the previously reported estimators
基于相位分数阶矩的/spl α /稳定杂波联合角/多普勒估计鲁棒子空间技术
将空时自适应处理(STAP)机载雷达在非高斯杂波环境中的联合角和多普勒估计问题建模为复杂对称α稳定过程。提出了一种新的基于相位分数阶矩(PFLOM)的协方差矩阵估计的鲁棒MUSIC算法PFLOM-MUSIC。该矩阵及其特征向量张成的子空间是高分辨率角度/多普勒估计方法的基础。通过将估计结果与符号协方差矩阵估计SCM-MUSIC的估计结果进行比较,检验了PFLOM-MUSIC的性能(T. Liu and J. M. Mendel, august 2001)。大量的仿真表明,我们提出的算法优于先前报道的估计器
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