DocumentCode
2162857
Title
A multi frequency radar for detecting landmines: design aspects and electrical performance
Author
van Genderen, P. ; Hakkaart, P. ; van Heijenoort, J. ; Hermans, G.P.
Author_Institution
International Research Center for Telecommunications transmission and Radar, Delft University of Technology, Faculty of Information Technology and Systems, Mekelweg 4, P.O.Box 5031, 2600 GA Delft, The Netherlands. e-mail: P.vanGenderen@ITS.TUDelft.NL
fYear
2001
fDate
24-26 Sept. 2001
Firstpage
1
Lastpage
4
Abstract
A radar has been designed and built for application in the problem of anti-personnel landmine detection. The radar is based on the principle of a Stepped Frequency Continuous Wave (SFCW) transmission scheme. The novelty of the system is, that it transmits 8 frequencies at the same time through one antenna and that it repeats this procedure 16 times with shifted frequency offsets in order to collect a set of 128 frequency samples. The resolution in the synthesized range profile in air is just over 3cm, while the total frequency coverage is from 400MHz upto 4845 MHz, so ultra wide band. The architecture of the radar however is based on Commercial Off The Shelf narrow band technology. The acquisition time for collection of a full set of 128 frequencies covering the ultra wide band is less than 2 msec. This short time was achieved by simultaneously transmitting 8 frequencies and using Direct Digital Synthesis for signal generation. The concept of SFCW radar is prone to errors in phase. Therefore a calibration facility is built in. First results of the system while it is still in the setting-to-work phase are encouraging.
Keywords
Frequency synthesizers; Landmine detection; Narrowband; Radar antennas; Radar applications; Radar detection; Signal generators; Signal synthesis; Transmitting antennas; Ultra wideband technology;
fLanguage
English
Publisher
ieee
Conference_Titel
Microwave Conference, 2001. 31st European
Conference_Location
London, England
Type
conf
DOI
10.1109/EUMA.2001.339012
Filename
4140080
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