DocumentCode
2523326
Title
Application of state-space frequency estimation to a 24-GHz FMCW tank level gauging system
Author
Gulden, Peter ; Vossiek, Martin ; Pichle, Markus ; Stelze, Andreas
Author_Institution
Siemens AG, Munich, Germany
Volume
3
fYear
2003
fDate
7-9 Oct. 2003
Firstpage
995
Abstract
Radar is a well established tank level gauging technique. Today, a shift towards more demanding measurement applications can be observed. As a result, novel radar signal processing algorithms emerge. One of the most challenging tasks for tank level gauging systems is separation of closely spaced targets, especially with the given bandwidth limitations set by both legal means and technical feasibility. Superresolution methods are expected to overcome the inherent resolution limits of Fourier transform based algorithms. However, they are fairly complex, making adaptation to real world radar signals a tedious and complicated task. Furthermore stability problems occur, mainly caused by the necessary a priori model-order estimation. This paper now demonstrates a robust implementation in a commercial 24 GHz radar tank level gauging system, where an adaptive model-order estimation algorithm is used. The measurements in an industrial tank show a threefold increase of the resolution while maintaining stability. Finally a special set of measurements shows that the selected state-space approach is especially well suited for the resolution of small peaks adjacent to larger echoes.
Keywords
CW radar; FM radar; fast Fourier transforms; state-space methods; 24 GHz; Fourier transform based algorithms; adaptive model order estimation; frequency modulated continuous wave radar tank level gauging system; radar signal processing algorithms; state space frequency estimation; Bandwidth; Fourier transforms; Frequency estimation; Law; Legal factors; Radar signal processing; Robustness; Signal processing algorithms; Signal resolution; Stability;
fLanguage
English
Publisher
ieee
Conference_Titel
Microwave Conference, 2003. 33rd European
Print_ISBN
1-58053-834-7
Type
conf
DOI
10.1109/EUMC.2003.1262820
Filename
1262820
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