Title :
Multichannel and Multiview Imaging Approach to Building Layout Determination of Through-Wall Radar
Author :
Yong Jia ; Guolong Cui ; Lingjiang Kong ; Xiaobo Yang
Author_Institution :
Sch. of Electron. Eng., Univ. of Electron. Sci. & Technol. of China, Chengdu, China
Abstract :
This letter considers the problem of building layout determination using through-wall-radar imaging technology, which employs multiple transmit-receive channels to implement multiview synthetic aperture imaging. In each view, the phase errors of multichannel data introduced by the unknown walls deteriorate significantly the performance of the coherently data-combined algorithm by Le Herein, we first obtain multiple single-channel building layout images for all independent channels of each view and propose a novel noncoherent fusion method named multiply-subtract-add to combine them into a single-view layout image. Then, we present an M- N- K detector plus median filtering to fuse multiple single-view layout images and reduce the existing cavities and burrs of wall images. The experimental results reveal that the presented noncoherent image fusion method gives the single-view layout images with higher signal-to-clutter-and-noise ratio than the conventional coherent algorithm based on data combination and a near-tidy panorama layout image is generated almost without the cavities and burrs.
Keywords :
image fusion; median filters; radar imaging; M- N- K detector; building layout determination; coherently data-combined algorithm; data combination; median filtering; multichannel data; multiply-subtract-add; multiview synthetic aperture imaging; near-tidy panorama layout image; noncoherent fusion method; phase errors; single-view layout image; through-wall-radar imaging technology; transmit-receive channels; Apertures; Buildings; Cavity resonators; Detectors; Imaging; Layout; Radar imaging; Building layout determination; image fusion; multichannel multiview; through-wall-radar imaging;
Journal_Title :
Geoscience and Remote Sensing Letters, IEEE
DOI :
10.1109/LGRS.2013.2283778