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首页> 外文期刊>Oceanic Engineering, IEEE Journal of >Coherent Multipath Direction-of-Arrival Resolution Using Compressed Sensing
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Coherent Multipath Direction-of-Arrival Resolution Using Compressed Sensing

机译:使用压缩传感的相干多径到达方向分辨率

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摘要

For a sound field observed on a sensor array, performance of conventional high-resolution adaptive beamformers is affected dramatically in the presence of coherent multipath signals, but the directions-of-arrival (DOAs) and power levels of these arrivals can be resolved with compressed sensing (CS). When the number of multipath signals is sufficiently small, a CS approach can be used by formulating the problem as a sparse signal recovery problem. CS overcomes the difficulty of resolving coherent arrivals at an array by directly processing the sensor outputs without first estimating a sensor covariance matrix. CS is compared to the adaptive minimum-variance-distortionless-response (MVDR) spatial processor with spatial smoothing. Though spatial smoothing produces improved results by preprocessing the sensor array covariance matrix to decorrelate the coherent multipath components, it reduces the effective aperture of the array and hence reduces the resolution. An empirical study with a uniform linear array (ULA) demonstrates that CS outperforms MVDR beamformer with spatial smoothing in terms of spatial resolution and bias and variance of DOA and power estimates. Analysis of the shallow-water HF97 ocean acoustic experimental data shows that CS is able to recover the DOAs and power levels of the multipath signals with superior resolution compared to MVDR with spatial smoothing.
机译:对于在传感器阵列上观察到的声场,在存在相干多径信号的情况下,传统的高分辨率自适应波束形成器的性能会受到显着影响,但是这些到达信号的到达方向(DOA)和功率电平可以通过压缩来解决。感应(CS)。当多径信号的数量足够小时,可以通过将问题表述为稀疏信号恢复问题来使用CS方法。 CS通过直接处理传感器输出而无需先估计传感器协方差矩阵来克服解决阵列中相干到达的困难。将CS与具有空间平滑功能的自适应最小方差无失真响应(MVDR)空间处理器进行比较。尽管空间平滑通过预处理传感器阵列协方差矩阵以解相关相干多径分量而产生了改善的结果,但它减小了阵列的有效孔径,因此降低了分辨率。对均匀线性阵列(ULA)进行的经验研究表明,就空间分辨率,DOA和功率估计的偏差和方差而言,CS在空间平滑方面优于MVDR波束形成器。对浅水HF97海洋声学实验数据的分析表明,与具有空间平滑的MVDR相比,CS能够以更高的分辨率恢复多径信号的DOA和功率电平。

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