Paper
13 May 2019 Coded aperture subreflector array for high resolution radar imaging
Jonathan J. Lynch, Florian G. Herrault, Gabriel L. Virbila, Keerti S. Kona, David L. Hammon, Dean C. Regan, Joel C. Wong, Yan Tang, Eric M. Prophet, Partia Naghibi, Aurelio Lopez, Michael D. Wetzel
Author Affiliations +
Abstract
This paper describes the design and demonstration of a 1024 element coded aperture subreflector array, implemented with single-bit phase shifters that utilize GaN HEMTs to modulate signals upon reflection. An active reflect-array enables digital beamforming using a single 235 GHz radar transceiver. Wafer level fabrication and assembly allows large arrays to be tiled up while maintaining reasonable costs.
© (2019) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Jonathan J. Lynch, Florian G. Herrault, Gabriel L. Virbila, Keerti S. Kona, David L. Hammon, Dean C. Regan, Joel C. Wong, Yan Tang, Eric M. Prophet, Partia Naghibi, Aurelio Lopez, and Michael D. Wetzel "Coded aperture subreflector array for high resolution radar imaging", Proc. SPIE 10994, Passive and Active Millimeter-Wave Imaging XXII, 1099405 (13 May 2019); https://doi.org/10.1117/12.2525061
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KEYWORDS
Phase shifts

Antennas

Waveguides

Field effect transistors

Coded apertures

Control systems

Gallium nitride

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