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Reduced-Rank STAP Schemes for Airborne Radar Based on Switched Joint Interpolation, Decimation and Filtering Algorithm

机译:基于切换联合插值,抽取和滤波算法的机载雷达降级STAP方案

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In this paper, we propose a reduced-rank space-time adaptive processing (STAP) technique for airborne phased array radar applications. The proposed STAP method performs dimensionality reduction by using a reduced-rank switched joint interpolation, decimation and filtering algorithm (RR-SJIDF). In this scheme, a multiple-processing-branch (MPB) framework, which contains a set of jointly optimized interpolation, decimation and filtering units, is proposed to adaptively process the observations and suppress jammers and clutter. The output is switched to the branch with the best performance according to the minimum variance criterion. In order to design the decimation unit, we present an optimal decimation scheme and a low-complexity decimation scheme. We also develop two adaptive implementations for the proposed scheme, one based on a recursive least squares (RLS) algorithm and the other on a constrained conjugate gradient (CCG) algorithm. The proposed adaptive algorithms are tested with simulated radar data. The simulation results show that the proposed RR-SJIDF STAP schemes with both the RLS and the CCG algorithms converge at a very fast speed and provide a considerable SINR improvement over the state-of-the-art reduced-rank schemes.
机译:在本文中,我们为机载相控阵雷达应用提出了一种降阶空时自适应处理(STAP)技术。所提出的STAP方法通过使用降秩切换联合插值,抽取和滤波算法(RR-SJIDF)来执行降维。在该方案中,提出了包含一组共同优化的插值,抽取和滤波单元的多处理分支(MPB)框架,以自适应地处理观测结果并抑制干扰和混乱。根据最小方差标准,将输出切换到性能最佳的分支。为了设计抽取单元,我们提出了一种最佳抽取方案和一个低复杂度抽取方案。我们还为提出的方案开发了两种自适应实现,一种基于递归最小二乘(RLS)算法,另一种基于约束共轭梯度(CCG)算法。所提出的自适应算法已通过模拟雷达数据进行了测试。仿真结果表明,所提出的同时具有RLS和CCG算法的RR-SJIDF STAP方案以非常快的速度收敛,并且相对于最新的降秩方案而言,SINR有了很大的提高。

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