DocumentCode :
1494864
Title :
Practical Illumination Uncertainty Assessment i-n Ground-Based Radar Measurements
Author :
Fischer, Brian ; Dester, Gary ; Conn, Timothy ; Hanberg, Richard W.
Author_Institution :
Gen. Dynamics Adv. Inf. Syst., Ypsilanti, MI, USA
Volume :
52
Issue :
1
fYear :
2010
Firstpage :
250
Lastpage :
256
Abstract :
The models governing ground-bounce illumination have been well understood for decades. Previously referenced work examined the application of these models to three-dimensional geometries, and showed that illumination variation is a spatially dependent function of frequency. Illumination variation requires knowledge of the target´s geometry and scattering characteristics in order to evaluate uncertainty. This paper leverages that work and further develops a short-time Fourier transform (STFT) method to extract frequency-domain scattering characteristics directly from target data. By utilizing at least two antenna heights in two separate measurements, ground-bounce geometries allow for useful target-feature characterization. This enables an assessment of spatial target uncertainty in the image domain, as well as for RCS; it further shows promise for illumination-error mitigation. This paper demonstrates this potential in simulation to support measurements collected at the National RCS Test Facility (NRTF), Holleman AFB, NM.
Keywords :
Fourier transforms; electromagnetic wave scattering; radar antennas; radar cross-sections; uncertain systems; RCS; for illumination-error mitigation; frequency-domain scattering characteristics; ground-based radar measurements; ground-bounce geometry; ground-bounce illumination; illumination uncertainty assessment; national RCS test facility; short-time Fourier transform method; spatial target uncertainty; target-feature characterization; Antenna measurements; Data mining; Fourier transforms; Frequency; Geometry; Lighting; Radar measurements; Radar scattering; Solid modeling; Test facilities; Radar cross sections; electromagnetic measurements; ground bounce; radar measurements; uncertainty;
fLanguage :
English
Journal_Title :
Antennas and Propagation Magazine, IEEE
Publisher :
ieee
ISSN :
1045-9243
Type :
jour
DOI :
10.1109/MAP.2010.5466464
Filename :
5466464
Link To Document :
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