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Implementation and Characterization of a Two-Dimensional Printed Circuit Dynamic Metasurface Aperture for Computational Microwave Imaging

Publication ,  Journal Article
Sleasman, TA; Imani, MF; Diebold, AV; Boyarsky, M; Trofatter, KP; Smith, DR
Published in: IEEE Transactions on Antennas and Propagation
April 1, 2021

We present the design, fabrication, and experimental characterization of a 2-D, dynamically tuned, metasurface aperture, emphasizing its potential performance in computational imaging applications. The dynamic metasurface aperture (DMA) consists of an irregular, planar cavity that feeds a multitude of tunable metamaterial elements, all fabricated in a compact, multilayer printed circuit board process. The design considerations for the metamaterial element as a tunable radiator, the associated biasing circuitry, as well as cavity parameters are examined and discussed. A sensing matrix can be constructed from the measured transmit patterns, the singular value spectrum of which provides insight into the information capacity of the apertures. We investigate the singular value spectra of the sensing matrix over a variety of operating parameters, such as the number of metamaterial elements, number of masks (aka tuning states), and number of radiating elements. After optimizing over these key parameters, we demonstrate computational microwave imaging of simple test objects.

Duke Scholars

Published In

IEEE Transactions on Antennas and Propagation

DOI

EISSN

1558-2221

ISSN

0018-926X

Publication Date

April 1, 2021

Volume

69

Issue

4

Start / End Page

2151 / 2164

Related Subject Headings

  • Networking & Telecommunications
  • 4009 Electronics, sensors and digital hardware
  • 4008 Electrical engineering
  • 4006 Communications engineering
  • 1005 Communications Technologies
  • 0906 Electrical and Electronic Engineering
 

Citation

APA
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ICMJE
MLA
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Sleasman, T. A., Imani, M. F., Diebold, A. V., Boyarsky, M., Trofatter, K. P., & Smith, D. R. (2021). Implementation and Characterization of a Two-Dimensional Printed Circuit Dynamic Metasurface Aperture for Computational Microwave Imaging. IEEE Transactions on Antennas and Propagation, 69(4), 2151–2164. https://doi.org/10.1109/TAP.2020.3027188
Sleasman, T. A., M. F. Imani, A. V. Diebold, M. Boyarsky, K. P. Trofatter, and D. R. Smith. “Implementation and Characterization of a Two-Dimensional Printed Circuit Dynamic Metasurface Aperture for Computational Microwave Imaging.” IEEE Transactions on Antennas and Propagation 69, no. 4 (April 1, 2021): 2151–64. https://doi.org/10.1109/TAP.2020.3027188.
Sleasman TA, Imani MF, Diebold AV, Boyarsky M, Trofatter KP, Smith DR. Implementation and Characterization of a Two-Dimensional Printed Circuit Dynamic Metasurface Aperture for Computational Microwave Imaging. IEEE Transactions on Antennas and Propagation. 2021 Apr 1;69(4):2151–64.
Sleasman, T. A., et al. “Implementation and Characterization of a Two-Dimensional Printed Circuit Dynamic Metasurface Aperture for Computational Microwave Imaging.” IEEE Transactions on Antennas and Propagation, vol. 69, no. 4, Apr. 2021, pp. 2151–64. Scopus, doi:10.1109/TAP.2020.3027188.
Sleasman TA, Imani MF, Diebold AV, Boyarsky M, Trofatter KP, Smith DR. Implementation and Characterization of a Two-Dimensional Printed Circuit Dynamic Metasurface Aperture for Computational Microwave Imaging. IEEE Transactions on Antennas and Propagation. 2021 Apr 1;69(4):2151–2164.

Published In

IEEE Transactions on Antennas and Propagation

DOI

EISSN

1558-2221

ISSN

0018-926X

Publication Date

April 1, 2021

Volume

69

Issue

4

Start / End Page

2151 / 2164

Related Subject Headings

  • Networking & Telecommunications
  • 4009 Electronics, sensors and digital hardware
  • 4008 Electrical engineering
  • 4006 Communications engineering
  • 1005 Communications Technologies
  • 0906 Electrical and Electronic Engineering