NASA Logo

NTRS

NTRS - NASA Technical Reports Server

Back to Results
Advanced radiometric and interferometric milimeter-wave scene simulationsSmart munitions and weapons utilize various imaging sensors (including passive IR, active and passive millimeter-wave, and visible wavebands) to detect/identify targets at short standoff ranges and in varied terrain backgrounds. In order to design and evaluate these sensors under a variety of conditions, a high-fidelity scene simulation capability is necessary. Such a capability for passive millimeter-wave scene simulation exists at TRW. TRW's Advanced Radiometric Millimeter-Wave Scene Simulation (ARMSS) code is a rigorous, benchmarked, end-to-end passive millimeter-wave scene simulation code for interpreting millimeter-wave data, establishing scene signatures and evaluating sensor performance. In passive millimeter-wave imaging, resolution is limited due to wavelength and aperture size. Where high resolution is required, the utility of passive millimeter-wave imaging is confined to short ranges. Recent developments in interferometry have made possible high resolution applications on military platforms. Interferometry or synthetic aperture radiometry allows the creation of a high resolution image with a sparsely filled aperture. Borrowing from research work in radio astronomy, we have developed and tested at TRW scene reconstruction algorithms that allow the recovery of the scene from a relatively small number of spatial frequency components. In this paper, the TRW modeling capability is described and numerical results are presented.
Document ID
19940021006
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Hauss, B. I.
(TRW, Inc. Redondo Beach, CA, United States)
Moffa, P. J.
(TRW, Inc. Redondo Beach, CA, United States)
Steele, W. G.
(TRW, Inc. Redondo Beach, CA, United States)
Agravante, H.
(TRW, Inc. Redondo Beach, CA, United States)
Davidheiser, R.
(TRW, Inc. Redondo Beach, CA, United States)
Samec, T.
(TRW, Inc. Redondo Beach, CA, United States)
Young, S. K.
(TRW, Inc. Redondo Beach, CA, United States)
Date Acquired
September 6, 2013
Publication Date
December 1, 1993
Publication Information
Publication: NASA. Ames Research Center, Proceedings of the Workshop on Augmented Visual Display (AVID) Research
Subject Category
Communications And Radar
Accession Number
94N25498
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
No Preview Available