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Compensation of clutter spectrum for airborne forward-looking radar based on the clutter subspace transformation

机译:基于杂波子空间变换的机载前视雷达杂波频谱补偿

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Space-Time Adaptive Processing (STAP) is a powerful two-dimensional filtering algorithm for clutter suppression. However, most previous studies of STAP theory have focused on side-looking array radar (SLAR). This paper addresses the issue of forward-looking radar from a STAP. The clutter distribution of airborne forward-looking radar is analyzed and investigated, and a new clutter suppression approach to airborne radar with forward-looking array based on clutter subspace is proposed. This method is referred to as clutter subspace transformation (CST) matrices, use clutter subspace transformation matrices are shown to eliminate ground clutter heterogeneous and generate a sufficient data to construct the new covariance matrix. Finally, the conventional STAP could be applied to the clutter suppression. Simulation results show a good improvement in processor performance.
机译:空时自适应处理(STAP)是用于杂波抑制的强大二维滤波算法。但是,以前对STAP理论的大多数研究都集中在侧视阵列雷达(SLAR)上。本文讨论了来自STAP的前视雷达的问题。对机载前视雷达的杂波分布进行了分析研究,提出了一种基于杂波子空间的前视阵列机载雷达杂波抑制方法。此方法称为杂波子空间变换(CST)矩阵,显示了使用杂波子空间变换矩阵可以消除杂波的地面杂波并生成足够的数据来构造新的协方差矩阵。最后,常规的STAP可以应用于杂波抑制。仿真结果显示了处理器性能的良好提高。

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