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Novel DOAs estimation method based on Doppler aided Chinese remainder theorem with all phase DFT for multiple targets in sparse array

机译:基于多普勒辅助中国剩余定理的新型DOAS估计方法,稀疏阵列中多个目标的所有阶段DFT

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In this study, the authors take further insight into the sparse geometry which offers a larger array aperture than uniform linear array with the same number of physical sensors. A novel direction of arrivals (DOAs) estimation model with flexible sparse geometry, which possesses the potential to significantly improve the estimation performance especially when the placed space and the weight of carrier such as airborne radar are restricted, is proposed to offer a larger aperture compared with co-prime array. The proposed algorithm can estimate DOAs by solving phase ambiguity. To improve the capability of spectrum analysis in frequency domain, all phase discrete Fourier transform (DFT), which can effectively alleviate spectrum leakage compared with traditional DFT, is proposed to apply into DOAs estimation. Additionally, the performance on degrees of freedom can be considerably improved compared with the state of the art where all the targets can be distinguished by Doppler information of received echo signal. More importantly, the proposed algorithm can effectively deal with DOA-closely-spaced targets because the proposed algorithm does not require to estimate signal subspace with ill-conditioned steering matrices. Both the theoretical analysis and simulation results demonstrate that the proposed algorithm significantly improves DOAs estimation precision with less computation cost.
机译:在这项研究中,作者进一步深入了解稀疏几何形状,其提供比具有相同数量的物理传感器的均匀线性阵列更大的阵列孔径。提出了一种具有柔性稀疏几何的抵达(DOAS)估计模型的新方向,其具有显着提高估计性能的可能性,特别是当放置空间和诸如机载雷达的载体的重量时,得到更大的孔径使用共同阵列。所提出的算法可以通过解决阶段歧义来估计DOA。为了提高频域中频谱分析的能力,提出了与传统DFT相比,可以有效缓解频谱泄漏的所有相离散傅里叶变换(DFT),以应用于DOAS估计。另外,与现有技术相比,可以显着改善自由度的性能,其中可以通过接收的回声信号的多普勒信息来区分所有目标。更重要的是,所提出的算法可以有效地处理DOA密切间隔的目标,因为所提出的算法不需要用残疾的转向矩阵估计信号子空间。理论分析和仿真结果都表明,所提出的算法显着提高了DOAS估计精度,具有较少的计算成本。

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