Remote Sensing (Oct 2022)

An Oblique Projection-Based Beamforming Method for Coherent Signals Receiving

  • Yumei Guo,
  • Qiang Li,
  • Linrang Zhang,
  • Juan Zhang,
  • Zhanye Chen

DOI
https://doi.org/10.3390/rs14195043
Journal volume & issue
Vol. 14, no. 19
p. 5043

Abstract

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Within a complex sea or ground surface background, multipath signals are strongly correlated or even completely coherent, which leads to signal cancellation when conventional optimal beamforming is performed. Aiming at the above problem, a coherent signal-receiving algorithm is proposed based on oblique projection technology in this paper. The direction of arrival (DOA) of incident signals is estimated firstly by the space smoothing-based MUSIC method. The composite steering vector of multipath coherent signals is then obtained utilizing the oblique projection matrix constructed with the estimated angles. The weight vector is thereby derived with the minimum variance distortionless response criteria. The proposed oblique projection-based beamformer can receive the multipath coherent signals effectively. Moreover, the proposed beamformer is more robust and converges to optimal beamformer rapidly without aperture loss. The theoretical analysis and simulation verify the validity and superiority of the proposed coherent signal beamformer.

Keywords