EngineeringPhysicsComputer Science

K. Cooper, R. Dengler, N. Llombart, B. Thomas, G. Chattopadhyay, P. Siegel

2011.8.30IEEE Transactions on Terahertz Science and Technology

DOI: 10.1109/tthz.2011.2159556

tlooto Summary

A summary of the NASA Jet Propulsion Laboratory's 675 GHz imaging radar is presented, with an emphasis on several key design aspects that enable fast, reliable through-clothes imaging of person-borne concealed objects.

Abstract

A summary of the NASA Jet Propulsion Laboratory's 675 GHz imaging radar is presented, with an emphasis on several key design aspects that enable fast, reliable through-clothes imaging of person-borne concealed objects. Using the frequency-modulated continuous-wave (FMCW) radar technique with a nearly 30 GHz bandwidth, sub-centimeter range resolution is achieved. To optimize the radar's range resolution, a reliable software calibration procedure compensates for signal distortion from radar waveform nonlinearities. Low-noise, high dynamic range detection comes from the radar's heterodyne RF architecture, low-noise chirp source, and high-performance 675 GHz transceiver. The radar's optical design permits low-distortion fast beam scanning for single-pixel imaging, and a real-time radar image frame rate of 1 Hz is now possible. Still faster speeds are on the horizon as multi-beam THz transceivers are developed.

Citation format

COOPER, K., et al. Thz imaging radar for standoff personnel screening. IEEE Transactions on Terahertz Science and Technology, 2011, 1: 169–182.