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Enhanced Millimeter-Wave 3-D Imaging via Complex-Valued Fully Convolutional Neural Network

  • Beijing Institute of Technology
  • Ministry of Public Security of the People's Republic of China

Research output: Contribution to journalArticlepeer-review

Abstract

To solve the problems of high computational complexity and unstable image quality inherent in the compressive sensing (CS) method, we propose a complex-valued fully convolutional neural network (CVFCNN)-based method for near-field enhanced millimeter-wave (MMW) threedimensional (3-D) imaging. A generalized form of the complex parametric rectified linear unit (CPReLU) activation function with independent and learnable parameters is presented to improve the performance of CVFCNN. The CVFCNN structure is designed, and the formulas of the complexvalued back-propagation algorithm are derived in detail, in response to the lack of a machine learning library for a complex-valued neural network (CVNN). Compared with a real-valued fully convolutional neural network (RVFCNN), the proposed CVFCNN offers better performance while needing fewer parameters. In addition, it outperforms the CVFCNN that was used in radar imaging with different activation functions. Numerical simulations and experiments are provided to verify the efficacy of the proposed network, in comparison with state-of-the-art networks and the CS method for enhanced MMW imaging.

Original languageEnglish
Article number147
JournalElectronics (Switzerland)
Volume11
Issue number1
DOIs
Publication statusPublished - 1 Jan 2022

Keywords

  • Complex parametric rectified linear unit (CPReLU) activation function
  • Complex-valued fully convolutional neural network (CVFCNN)
  • Compressive sensing
  • Millimeter-wave imaging
  • Real-valued fully convolutional neural network (RVFCNN)

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