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DOA Estimation Method in Multipath Environment for Passive Bistatic Radar

机译:无源双震雷达多径环境中的DOA估计方法

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Direction-of-arrival (DOA) estimation in multipath environment is an important issue for passive bistatic radar (PBR) using frequency agile phased array VHF radar as illuminator of opportunity. Under such scenario, the main focus of this paper is to cope with the closely spaced uncorrelated and coherent signals in low signal-to-noise ratio and limited snapshots. Making full use of the characteristics of moduli of eigenvalues, the DOAs of the uncorrelated signals are firstly estimated. Afterwards, their contributions are eliminated by means of spatial difference technique. Finally, in order to improve resolution and accuracy DOA estimation of remaining coherent signals while avoiding the cross-terms effect, a new beamforming solution based iterative adaptive approach (IAA) is proposed to deal with a reconstructed covariance matrix. The proposed method combines the advantages of both spatial difference method and the IAA algorithm while avoiding their shortcomings. Simulation results validate its effectiveness; meanwhile, the good performances of the proposed method in terms of resolution probability, detection probability, and estimation accuracy are demonstrated by comparison with the existing methods.
机译:多径环境中的抵达方式(DOA)估计是使用频率敏捷相位阵列VHF雷达作为机会照明器的被动双峰雷达(PBR)的重要问题。在这种情况下,本文的主要焦点是应对低信噪比和有限的快照的紧密间隔的不相关和相干信号。充分利用特征值的模态的特征,首先估计不相关信号的DOA。然后,通过空间差异技术消除它们的贡献。最后,为了提高剩余相干信号的分辨率和精度DOA估计,同时避免跨术语效果,提出了一种基于新的波束形成解决方案(IAA)以处理重建的协方差矩阵。该方法结合了空间差异方法和IAA算法的优点,同时避免了它们的缺点。仿真结果验证其有效性;同时,通过与现有方法进行比较,证明了在分辨率,检测概率和估计准确性方面所提出的方法的良好性能。

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