DocumentCode
1858870
Title
FM demodulation of IQ baseband signals using Kalman filters
Author
Schadt, Frank ; Mohr, Friedemann ; Holzer, Markus
Author_Institution
Optoelectron. & Laser Metrol. Lab., Pforzheim Univ., Pforzheim
fYear
2008
fDate
24-25 April 2008
Firstpage
1
Lastpage
4
Abstract
Frequency or phase modulated electrical signals arise in multiple applications in communication systems as well as in measurement setups such as interferometry / vibrometry, velocimetry etc. Common demodulation techniques are often based on analog techniques (e.g. a PLL in the RF band) or - after mixing into the base band and generating IQ signals - on digital signal processing algorithms. Two DSP based algorithms for the frequency demodulation of lQ baseband signals will be presented and compared in this paper. One of them is the synthetic heterodyne approach, based on the digital derivation of the arctan of the angle described by the I and Q component. It will be shown, that this algorithm is very sensitive to noise in the baseband signals. The other, more modern algorithm uses a Kalman filter as an "optimal" estimator of the instantaneous phase and frequency of the two signals. It will be shown that the Kalman filter shows a drastically improved noise performance.
Keywords
Kalman filters; demodulation; signal processing; FM demodulation; IQ baseband signals; Kalman filters; analog techniques; communication systems; digital derivation; digital signal processing algorithms; optimal estimator; Baseband; Demodulation; Digital signal processing; Electric variables measurement; Frequency estimation; Frequency measurement; Frequency modulation; Phase measurement; Phase modulation; Signal processing algorithms; Adaptive Filter; Frequency Demodulation; Homodyne Vibrometer; IQ Signals; Interferometry; Kalman Filter; Noise Reduction; Phase Demodulation; Vibrometry;
fLanguage
English
Publisher
ieee
Conference_Titel
Radioelektronika, 2008 18th International Conference
Conference_Location
Prague
Print_ISBN
978-1-4244-2087-2
Electronic_ISBN
978-1-4244-2088-9
Type
conf
DOI
10.1109/RADIOELEK.2008.4542688
Filename
4542688
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