DocumentCode :
1516430
Title :
Time-Reversal Ground-Penetrating Radar: Range Estimation With Cramér–Rao Lower Bounds
Author :
Foroozan, Foroohar ; Asif, Amir
Author_Institution :
Dept. of Comput. Sci. & Eng., York Univ., Toronto, ON, Canada
Volume :
48
Issue :
10
fYear :
2010
Firstpage :
3698
Lastpage :
3708
Abstract :
In this paper, first, a new range-estimation technique using time reversal (TR) for ground-penetrating-radar (GPR) applications is presented. The estimator is referred to as the TR/GPR range estimator. The motivation for this paper comes from the need of accurately estimating the location of underground objects such as landmines or unexploded ordinance for safe clearance. Second, the Cramér-Rao lower bound (CRLB) for the performance of the TR/GPR range estimator is derived and compared with the CRLB for the conventional matched filter (MF). The CRLB analysis shows that the TR/GPR range estimator has the potential to achieve higher accuracy in estimating the location of the target than that of the conventional MF estimator. Third, the proposed TR/GPR estimator is tested using finite-difference time-domain simulations, where the surface-based reflection GPR is modeled using an electromagnetic transverse-magnetic (TM) mode formulation. In our simulations, the TR/GPR estimator outperforms the conventional MF approach by up to 5-dB reduction in mean square error at signal-to-noise ratios ranging from -20 to 20 dB for dry-soil environments.
Keywords :
finite difference time-domain analysis; ground penetrating radar; matched filters; radar signal processing; CRLB; Cramer-Rao lower bounds; dry-soil environments; electromagnetic transverse-magnetic mode; finite-difference time-domain simulations; landmines; matched filter; mean square error; range-estimation technique; safe clearance; signal-to-noise ratios; surface-based reflection; time reversal ground-penetrating-radar; underground objects; unexploded ordinance; Buried object detection; Electromagnetic modeling; Electromagnetic reflection; Finite difference methods; Ground penetrating radar; Landmine detection; Matched filters; Testing; Time domain analysis; Weapons; Cramér–Rao bounds; ground-penetrating radar (GPR); multipath; range estimation; time reversal (TR);
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/TGRS.2010.2047726
Filename :
5484708
Link To Document :
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