Title :
Robust adaptive detection of optical patterns in low resolution airborne radar images
Author :
Vela, G. DeMiguel ; Rodriguez, F. J Jiménez ; Madrid, J.J.Martinez ; Corredera, J.R.Casar
Author_Institution :
ETSI Telecomunicacion, Univ. Politecnica de Madrid, Spain
Abstract :
Deals with the conception and design methodology of detectors for the location of prominent objects in airborne radar imagery. In its first half, several detection configurations are compared (linear, squared, logarithmic and binary detectors) working on impulsive clutter environments (Weibull model). The election of one detector over the others is based on its average behaviour over the whole range of clutter impulsiveness characteristics expected for the type of environment. The main conclusion is that logarithmic and binary detectors outperform the others. An adaptive threshold mechanism is incorporated into the detectors. Its aim is to maintain their CFAR property against variations of clutter impulsiveness. This scheme is based on the determination of the CFAR detection threshold factor as a function of the PFA estimated at a lower threshold (pseudothreshold)
Keywords :
feature extraction; geophysical techniques; geophysics computing; image processing; image recognition; remote sensing; remote sensing by radar; synthetic aperture radar; SAR imaging; Weibull model; adaptive threshold mechanism; binary detector; feature extraction; geophysical measurement technique; image processing; impulsive clutter; land surface; linear; logarithmic; low resolution airborne radar image; optical patterns; radar imagery; radar remote sensing; robust adaptive detection; squared; terrain; Adaptive optics; Airborne radar; Clutter; Image resolution; Laser radar; Object detection; Optical detectors; Radar detection; Radar imaging; Robustness;
Conference_Titel :
Geoscience and Remote Sensing Symposium, 1993. IGARSS '93. Better Understanding of Earth Environment., International
Conference_Location :
Tokyo
Print_ISBN :
0-7803-1240-6
DOI :
10.1109/IGARSS.1993.322732