DocumentCode :
81705
Title :
Efficient target detection using an adaptive compressive imager
Author :
Mahalanobis, A. ; Muise, R. ; Roy, S.
Author_Institution :
Lockheed Martin MFC, Orlando, FL, USA
Volume :
50
Issue :
4
fYear :
2014
fDate :
Oct-14
Firstpage :
2528
Lastpage :
2540
Abstract :
The goal of a target detection system is to determine the location of potential targets in the field of view of the sensor. Traditionally, this is done using high-quality images from a conventional imager. For wide-field-of-view scenarios, this can pose a challenge for both data acquisition and system bandwidth. In this paper, we discuss a compressive sensing technique for target detection that dramatically reduces the number of measurements that is required to perform the task, as compared with the number of pixels in conventional images. This, in turn, can reduce the data rate from the sensor electronics, and along with it, the cost, complexity, and the bandwidth requirements of the system. Specifically, we discuss a two-stage approach that, first, adaptively searches a large area using shift-invariant masks to determine the locations of potential targets (i.e., the regions of interest) and then revisits each location to discriminate between target and clutter using a different set of specialized masks.We show that the overall process is not only highly efficient (i.e., dramatically reduces the number of measurements as compared with the number of pixels) but does so without appreciable loss in target detection performance.
Keywords :
clutter; compressed sensing; computational complexity; image coding; image sensors; object detection; adaptive compressive imager; bandwidth requirement reduction; compressive sensing technique; data rate reduction; high-quality image; sensor field of view; shift-invariant mask; target detection system; target location determination; two-stage approach; Clutter; Correlation; Detectors; Image coding; Image reconstruction; Object detection;
fLanguage :
English
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9251
Type :
jour
DOI :
10.1109/TAES.2014.130076
Filename :
6978859
Link To Document :
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