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Doa estimation of nonparametric spreading spatial spectrum based on bayesian compressive sensing exploiting intra-task dependency

机译:基于任务内依赖的贝叶斯压缩感知的非参数扩展空间谱的Doa估计

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For spatially distributed targets encountered in radar and sonar applications, direct application of subspace-based methods usually do not lead to an accurate estimation of the direction and angular extent of the signal arrivals. If the spatial distribution of the targets can be parameterized with a known model a priori, the direction-of-arrival (DOA) estimation problems can be simplified as parameter estimation problems. However, these methods do not apply when the targets are not parameterizable. Motivated by this fact, we propose an effective approach for the DOA estimation of nonparametric spatially extended targets. In the proposed approach, the spatially extended targets are modeled as a continuous sparse structure, which are effectively estimated using the Bayesian compressive sensing techniques based on a paired spike-and-slab prior accounting for the angular target spread. In particular, the problem is examined under a collocated multiple-input multiple-output (MIMO) radar platform. Signal transmission at multiple coprime transmit frequencies are also considered to achieve increased degrees-of-freedom. The group sparsity of the targets across different frequencies is exploited to achieve improved DOA estimation performance.
机译:对于雷达和声纳应用中遇到的空间分布目标,直接应用基于子空间的方法通常不会导致对信号到达的方向和角度范围的准确估计。如果可以使用已知模型先验地设定目标的空间分布,则可以将到达方向(DOA)估计问题简化为参数估计问题。但是,当无法对目标进行参数设置时,这些方法将不适用。基于这一事实,我们提出了一种用于非参数空间扩展目标的DOA估计的有效方法。在所提出的方法中,将空间扩展目标建模为连续的稀疏结构,可以使用贝叶斯压缩感测技术基于成对的尖峰和扁坯进行有效估计,然后再考虑角度目标散布。特别是,该问题是在并置的多输入多输出(MIMO)雷达平台下检查的。还考虑了以多个互质发射频率进行信号传输,以实现更高的自由度。利用目标在不同频率上的群稀疏性来提高DOA估计性能。

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