DocumentCode :
354389
Title :
Video-rate passive millimeter-wave imager
Author :
Olsen, Randall ; Clark, Stuart ; Galliano, Joe ; Chung-Ta Hseih ; Lovberg, John ; Martin, Chris ; Phillips, Chet
Author_Institution :
ThermoTrex Corp. dba Trex Enterprises, USA
Volume :
1/17 pp. vol.1
fYear :
1999
fDate :
36465
Abstract :
Passive millimeter-wave imager (PMI) technology provides a powerful sensor capability for military and commercial imaging applications in adverse weather. Recent advances in high-frequency antennas, MMW electronics, and high-speed signal processing, have brought real-time, high-contrast, high-resolution, wide-field of view PMI into the realm of technological feasibility. However, the prohibitive cost and volume of previous PMI architectures have proved impractical for all but a few scientific implementations. This situation has precluded PMI usage in several applications with demonstrable benefits, such as aircraft landing, and radio-silent airborne surveillance/battle damage assessment. A new PMI architecture has been demonstrated with a high frame rate (30 Hz) with order of magnitude reductions in cost and volume relative to previous designs. Highlights of this new PMI architecture will be presented along with examples of video-rate imaging data representing its current capability for airborne imaging
Keywords :
microwave landing systems; military systems; millimetre wave imaging; radiometry; real-time systems; surveillance; 30 Hz; adverse weather; airborne surveillance; aircraft landing; cost; frame rate; high-frequency antennas; high-speed signal processing; video-rate imaging data; video-rate passive millimeter-wave imager; Costs; Image resolution; Image sensors; Infrared detectors; Infrared image sensors; Microwave radiometry; Millimeter wave technology; Optical arrays; Optical imaging; Pixel;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Digital Avionics Systems Conference, 1999. Proceedings. 18th
Conference_Location :
St Louis, MO
Print_ISBN :
0-7803-5749-3
Type :
conf
DOI :
10.1109/DASC.1999.863711
Filename :
863711
Link To Document :
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