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ADMM for ND Line Spectral Estimation Using Grid-free Compressive Sensing from Multiple Measurements with Applications to DOA Estimation

机译:使用多测量中的无网格压缩感测来进行ND线谱估计的ADMM及其在DOA估计中的应用

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This paper is concerned with estimating unknown multidimensional frequencies from linear compressive measurements. This is accomplished by employing the recently proposed atomic norm minimization framework to recover these frequencies under a sparsity prior without imposing any grid restriction on these frequencies. To this end, we give a rigorous derivation of an iterative scheme called alternating direction of multipliers method, which is able to incorporate multiple compressive snapshots from a multi-dimensional superposition of complex harmonics. The key result here is how to formulate the objective function minimized by this scheme and its partial derivatives, which become hard to manage if the dimensionality of the frequencies is larger than 1. Moreover we demonstrate the performance of this approach in case of 3D line spectral estimation and 2D DOA estimation with a synthetic antenna array.
机译:本文涉及根据线性压缩测量估算未知的多维频率。这是通过采用最近提出的原子规范最小化框架在稀疏下恢复这些频率而不对这些频率施加任何网格限制来实现的。为此,我们给出了一个迭代方案的严格派生,该方案称为“乘数交替方向”方法,该方法能够从复杂谐波的多维叠加中合并多个压缩快照。此处的关键结果是如何制定由该方案及其偏导数最小化的目标函数,如果频率的维数大于1,则将变得难以管理。此外,我们演示了这种方法在3D线谱情况下的性能。合成天线阵列进行估计和2D DOA估计。

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