DocumentCode
1487319
Title
A Novel UWB Sampling Receiver and Its Applications for Impulse GPR Systems
Author
Liu, Lihua ; Fang, Guangyou
Author_Institution
Inst. of Electron., Chinese Acad. of Sci., Beijing, China
Volume
7
Issue
4
fYear
2010
Firstpage
690
Lastpage
693
Abstract
A novel ultrawideband (UWB) synchronous receiver for a UWB radar system is presented. The developed receiver is the first to employ a sampling phase detector, which integrates a step recovery diode and a pair of Schottky diodes, to sample the UWB signal of a radar, enabling the miniaturization of the design. It achieves a 6-GHz sampling bandwidth, a dynamic range of more than 50 dB, and low harmonic distortion of the output baseband signal. The receiver´s down-converted IF signals closely match with their original shape, demonstrating its good performance to reconstruct the microwave signals from a receiving antenna. These IF signals can be converted to digital signals by a low-cost A/D. For verification, the performance of the UWB receiver is tested through the experiments of buried steels at different thicknesses in the sand when it is applied to the ground-penetrating radar (GPR). The results show that the GPR system has good horizontal resolution and large detection depth. Therefore, this GPR system is very attractive and effective for applications of short-range and high-resolution detection.
Keywords
Schottky diodes; analogue-digital conversion; ground penetrating radar; harmonic distortion; microwave receivers; receiving antennas; signal detection; signal reconstruction; signal sampling; ultra wideband communication; ultra wideband radar; Schottky diodes; UWB radar system; UWB sampling receiver; bandwidth 6 GHz; down-converted IF signals; ground-penetrating radar; harmonic distortion; impulse GPR systems; low-cost A/D; microwave signal reconstruction; receiving antenna; sampling phase detector; step recovery diode; ultrawideband synchronous receiver; Bandwidth; Detectors; Ground penetrating radar; Phase detection; Radar detection; Sampling methods; Schottky diodes; Signal design; Ultra wideband radar; Ultra wideband technology; Ground-penetrating radar (GPR); UWB receiver; sampling circuit; sampling phase detector (SPD); ultrawideband (UWB);
fLanguage
English
Journal_Title
Geoscience and Remote Sensing Letters, IEEE
Publisher
ieee
ISSN
1545-598X
Type
jour
DOI
10.1109/LGRS.2010.2045632
Filename
5462849
Link To Document