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首页> 外文期刊>Aerospace and Electronic Systems, IEEE Transactions on >Spatial Compressive Sensing for Direction-of-Arrival Estimation of Multiple Sources using Dynamic Sensor Arrays
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Spatial Compressive Sensing for Direction-of-Arrival Estimation of Multiple Sources using Dynamic Sensor Arrays

机译:使用动态传感器阵列的多源到达方向估计的空间压缩感测

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摘要

This work addresses the problem of direction-of-arrival (DOA) estimation of multiple sources using short and dynamic sensor arrays. We propose to utilize compressive sensing (CS) theory to reconstruct the high-resolution spatial spectrum from a small number of spatial measurements. Motivated by the physical structure of the spatial spectrum, we model it as a sparse signal in the wavenumber-frequency domain, where the array manifold is proposed to serve as a deterministic sensing matrix. The proposed spatial CS (SCS) approach allows exploitation of the array orientation diversity (achievable via array dynamics) in the CS framework to address challenging array signal processing problems such as left-right ambiguity and poor estimation performance at endfire. The SCS is conceptually different from well-known classical and subspace-based methods because it provides high azimuth resolution using a short dynamic linear array without restricting requirements on the spatial and temporal stationarity and correlation properties of the sources and the noise. The SCS approach was shown to outperform current superresolution and orientation diversity based methods in single-snapshot simulations with multiple sources.
机译:这项工作解决了使用短动态传感器阵列的多个源到达方向(DOA)估计的问题。我们建议利用压缩感测(CS)理论从少量空间测量值中重建高分辨率空间光谱。受空间频谱物理结构的激励,我们将其建模为波数-频域中的稀疏信号,并提出将阵列流形用作确定性传感矩阵。提出的空间CS(SCS)方法允许利用CS框架中的阵列方向分集(可通过阵列动力学实现)来解决具有挑战性的阵列信号处理问题,例如左右歧义和端射时估计性能差。 SCS在概念上与众所周知的经典方法和基于子空间的方法不同,因为它使用短动态线性阵列提供了高方位角分辨率,而又不限制对源和噪声的时空平稳性和相关性的要求。在多源单快照仿真中,SCS方法表现出优于当前基于超分辨率和方向分集的方法。

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