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September 17, 2025Sensors2 citationsOpen Access

Matrix Completion and Propagator Method-Based Fast 2D-DOA Estimation with Noise Suppression for Arbitrary EMVS Arrays

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YRYunzhe RuanWGWeiwei Gong

Key Points

  • The algorithm significantly enhances 2D-DOA estimation speed and accuracy even in noisy conditions.
  • Simulation results show this approach outperforms conventional algorithms such as ESPRIT and improved ESPRIT.
  • Noise suppression techniques effectively minimize the impact of nonuniform noise on signal estimation.
  • The method achieves low computational complexity while maintaining high degrees of freedom in estimates.

Abstract

This paper introduces an innovative rapid algorithm for estimating two-dimensional direction of arrival (2D-DOA) with randomly arranged electromagnetic vector sensor (EMVS) arrays under nonuniform noise conditions. The approach begins by forming the covariance matrix of the received signal matrix, after which elements affected by noise are removed based on the characteristics of nonuniform noise to reduce its disruptive effects. Subsequently, the pure covariance matrix is filled using a matrix completion algorithm and then reconstructed into a new matrix. Finally, the signal subspace is extracted by the propagator method (PM) algorithm, and the 2D-DOA is estimated via a method analogous to the Estimation of Signal Parameters via Rotational Invariance Techniques (ESPRIT). Theoretical analyses confirm the high degrees of freedom of the algorithm, low computational complexity, and accuracy of the estimation. Simulation results validate that the proposed algorithm exhibits remarkable resilience against nonuniform noise. When compared with conventional algorithms such as ESPRIT, ESPRIT-like, and improved ESPRIT (IESPRIT), it also shows better performance in terms of estimation speed and accuracy.

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Cite This Study

Ruan et al. (2025) studied this question.

synapsesocial.com/papers/68d45b1b31b076d99fa5d7fdhttps://doi.org/10.3390/s25185769
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