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Joint DOA and frequency estimation with sub-Nyquist sampling

机译:亚奈奎斯特采样联合DOA和频率估计

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摘要

Inspired by the concept of sub-Nyquist sampling, in this paper, a receiver architecture of sensor arrays for jointly estimating the frequency and direction-of-arrival (DOA) of the narrowband far-field signals is presented. In particular, our contribution is threefold. (i) First, we propose a time-space unionized signal reception model for array signals, where sub-Nyquist sampling techniques can be used. (ii) Second, based on the reception model, two algorithms for jointly estimating frequency and DOA are proposed. One is based on a trilinear decomposition by the third-order tensor theory and the other is based on subspace decomposition. (iii) Third, we derive the corresponding Cramer-Rao Bound (CRB) for such a model and analyze the computational complexity of the proposed algorithms as well. Simulation results demonstrate that the estimation performance of our proposed algorithms based on the receiver architecture closely match the CRBs with respect to the noise levels, the branch number and the source number. (C) 2018 Elsevier B.V. All rights reserved.
机译:受亚奈奎斯特采样概念的启发,本文提出了一种传感器阵列的接收器架构,用于联合估计窄带远场信号的频率和到达方向(DOA)。特别是,我们的贡献是三倍的。 (i)首先,我们提出了一种阵列信号的时空联合信号接收模型,其中可以使用亚奈奎斯特采样技术。 (ii)其次,基于接收模型,提出了两种联合估算频率和DOA的算法。一种基于三阶张量理论的三线性分解,另一种基于子空间分解。 (iii)第三,我们为这种模型导出相应的Cramer-Rao界(CRB),并分析所提出算法的计算复杂性。仿真结果表明,我们提出的基于接收器架构的算法的估计性能在噪声水平,分支数和源数方面与CRB紧密匹配。 (C)2018 Elsevier B.V.保留所有权利。

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