Title :
Test results of an experimental autonomous aircraft landing system utilizing a 94 GHz FM-CW imaging radar
Author :
Bui, L.Q. ; Uecker, D. ; Loose, E. ; Alon, Y.
Author_Institution :
Lear Astronics Corp., Santa Monica, CA, USA
Abstract :
An experimental system capable of aiding a pilot during adverse weather landings, primarily dense fog, has been built and tested both on the ground and in flight. The system includes a 94-GHz FM-CW (frequency-modulation continuous-wave) radar as the front-end sensor and a back-end digital signal and image processor for image generation, enhancement, and transformation. The high-performance 94-GHz radar utilizes a twisted Cassegrain reflector, an external ILO, and an HEMT (high electron mobility transistor) MIMIC (millimeter wave monolithic integrated circuit) LNA (low-noise amplifier) image-reject mixer front end to overcome the low transmitted power and poor receiver noise qualities of typical W-band radar systems. The back-end processing hardware uses a number of processors in a flexible and reconfigurable pipeline architecture for implementation of a variety of enhancement algorithms. Test results recorded on the ground and in flight indicate that this system has future commercial promise.<>
Keywords :
aircraft instrumentation; frequency modulation; ground support systems; image processing equipment; instrument landing systems; microwave imaging; microwave landing systems; pipeline processing; radar systems; 94 GHz; EHF; FM-CW imaging radar; HEMT; LNA; MIMIC; MLS; MM-wave radar; W-band; adverse weather landings; autonomous aircraft landing system; back-end digital signal; back-end processing hardware; continuous-wave; dense fog; frequency-modulation; front-end sensor; high electron mobility transistor; image enhancement; image generation; image processor; image transformation; image-reject mixer front end; low-noise amplifier; millimeter wave monolithic integrated circuit; pipeline architecture; twisted Cassegrain reflector; Airborne radar; Aircraft; Frequency; HEMTs; Image sensors; MIMICs; Millimeter wave radar; Radar imaging; Radar signal processing; System testing;
Conference_Titel :
Microwave Symposium Digest, 1993., IEEE MTT-S International
Conference_Location :
Atlanta, GA, USA
Print_ISBN :
0-7803-1209-0
DOI :
10.1109/MWSYM.1993.277021