Title :
Windshear detection and avoidance: airborne systems survey
Author :
Bowles, Roland L.
Author_Institution :
NASA Langley Res. Center, Hampton, VA, USA
Abstract :
Functional requirements for airborne windshear detection and warning systems are discussed in terms of the threat posed to civil aircraft operations. A preliminary set of performance criteria for predictive windshear detection and warning systems is defined. Candidate airborne remote sensor technologies based on microwave Doppler radar, Doppler laser radar (lidar), and infrared radiometric techniques are discussed in the context of overall system requirements, and the performance of each sensor is assessed for representative microburst environments and ground clutter conditions. Preliminary simulation results demonstrate that all three sensors show potential for detecting windshear, and provide adequate warning time to allow flight crews to avoid the affected area or escape from the encounter. Radar simulation and analysis show that by using bin-to-bin automatic gain control, clutter filtering, limited detection range, and suitable antenna tilt management, windshear from wet microbursts can be accurately detected. Simulation results of end-to-end performance for competing coherent lidar systems are presented
Keywords :
aircraft control; aircraft instrumentation; filtering and prediction theory; radar applications; radiometry; remote sensing; Doppler laser radar; IR radiometry; aircraft; antenna tilt management; automatic gain control; bin-to-bin; clutter filtering; ground clutter; lidar; microburst; microwave Doppler radar; warning systems; windshear detection; Aircraft; Alarm systems; Doppler radar; Infrared sensors; Laser radar; Microwave technology; Radar antennas; Radar clutter; Radar detection; Remote sensing;
Conference_Titel :
Decision and Control, 1990., Proceedings of the 29th IEEE Conference on
Conference_Location :
Honolulu, HI
DOI :
10.1109/CDC.1990.203685