DocumentCode :
714962
Title :
Time- and frequency-domain MIMO FLGPR imaging
Author :
Deoksu Lim ; Luzhou Xu ; Gianelli, Chris ; Jian Li ; Lam Nguyen ; Anderson, John
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Florida, Gainesville, FL, USA
fYear :
2015
fDate :
10-15 May 2015
Firstpage :
1305
Lastpage :
1310
Abstract :
Multiple-input multiple-output (MIMO) forward looking ground penetrating radar (FLGPR) systems have shown the capability to improve performance for landmine detection. By leveraging multiple collocated transmitters and receivers, the waveform diversity offered by MIMO FLGPR systems provides performance enhancement in target detection, parameter identifiability, and increased cross-range resolution. In this paper, we introduce a data-dependent image formation algorithm based on the sparse learning via iterative minimization (SLIM) approach for high-resolution imaging applied to both time- and frequency-domain. In addition, we compare time-domain SLIM (TD-SLIM) and frequency-domain SLIM (FD-SLIM) with data-independent methods such as delay-and-sum (DAS) and recursive sidelobe minimization (RSM), designed by the Army Research Laboratory (ARL). These algorithms are applied to data collected by the Synchronous Impulse Reconstruction (SIRE) Ultra-wideband (UWB) radar developed by ARL for landmine detection. When applied to data collected by this 2 by 16 MIMO radar system, both the TD-SLIM and FD-SLIM algorithms yield results with higher resolution than the two conventional methods applied to the data. FD-SLIM provides significantly reduced computational time compared to TD-SLIM, motivating its application for high-resolution MIMO FLGPR imaging.
Keywords :
MIMO radar; frequency-domain analysis; ground penetrating radar; image reconstruction; image resolution; iterative methods; landmine detection; radar detection; radar imaging; radar receivers; radar resolution; radar transmitters; time-domain analysis; ultra wideband radar; ARL; FD-SLIM algorithm; SIRE ultra wideband radar; SLIM approach; TD-SLIM algorithm; computational time reduction; cross-range resolution; data-dependent image formation algorithm; data-independent method; forward looking ground penetrating radar system; frequency-domain MIMO FLGPR imaging; frequency-domain SLIM; high-resolution imaging; landmine detection; multiple collocated receivers; multiple collocated transmitters; multiple input multiple output system; sparse learning via iterative minimization approach; synchronous impulse reconstruction UWB radar; target detection; time-domain MIMO FLGPR imaging; time-domain SLIM; Antenna arrays; Frequency-domain analysis; High-resolution imaging; Imaging; Landmine detection; MIMO;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Radar Conference (RadarCon), 2015 IEEE
Conference_Location :
Arlington, VA
Print_ISBN :
978-1-4799-8231-8
Type :
conf
DOI :
10.1109/RADAR.2015.7131197
Filename :
7131197
Link To Document :
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