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A Truncated Matrix Completion Algorithm Using Prior Information for Wind Turbine Clutter Suppression

Author

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  • Minghe Mao
  • Tianhe Li
  • Mingwei Shen
  • Ning Cao
  • Rui Shi
  • Rui Li

Abstract

The conventional matrix completion (MC) regularizes each singular value equally, and thus the rank cannot be well approximated, which greatly limits the flexibility and accuracy of MC usage. In this paper, a truncated MC algorithm using prior information to determine the threshold while generating the target rank is proposed for the wind turbine clutter suppression of weather radar. During the singular value shrinking process, an appropriate threshold is selected to obtain the optimal approximation of the sampling matrix. Specifically, the mean value of the diagonal element in the recovered weather matrix is calculated to improve the robustness of the recovery result effectively. Simulation results demonstrate that the proposed algorithm reduces the computational complexity as well as further improves the MC accuracy and realizes the effective suppression of the wind turbine clutter.

Suggested Citation

  • Minghe Mao & Tianhe Li & Mingwei Shen & Ning Cao & Rui Shi & Rui Li, 2021. "A Truncated Matrix Completion Algorithm Using Prior Information for Wind Turbine Clutter Suppression," Mathematical Problems in Engineering, Hindawi, vol. 2021, pages 1-10, June.
  • Handle: RePEc:hin:jnlmpe:8814415
    DOI: 10.1155/2021/8814415
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