DocumentCode :
529590
Title :
Design of a digital frequency discriminator using least squares based phase calibration
Author :
Park, Jin Oh ; Seo, Jae Beom ; Kim, Jung Hee ; Nam, Sang Won
Author_Institution :
LIG NEX1 Electron. Warfare R&D Center, Hanyang Univ., Seoul, South Korea
fYear :
2010
fDate :
18-21 Aug. 2010
Firstpage :
1768
Lastpage :
1772
Abstract :
A digital frequency discriminator (DFD), i.e., a frequency measurement device with delay-line discriminators, has been developed for accurate measurement of the instantaneous frequency from received signals. In this paper, a new DFD with unwrapped-phase calibration in each correlator is proposed by reconsidering the basic operating principles of the DFD from a signal processing point of view, which enables us to reduce memory spaces. More specifically, the proposed approach utilizes (i) phase calibration to find the unwrapped phase in each delay time in consideration of integer multiples of 360° and (ii) estimation of the instantaneous frequency by fitting the unwrapped phase into the least-square straight-line. Finally, it is also demonstrated indirectly that the proposed approach can reduce frequency estimation ambiguity in a noisy environment, since it is shown that the proposed design is robust to additive phase noise ±30° under a specific case of the 1:4 ratio DFD, while the conventional DFD designs are restricted to ±22.5°.
Keywords :
delays; discriminators; electronic warfare; frequency estimation; frequency measurement; least squares approximations; delay line discriminator; delay time; digital frequency discriminator; frequency estimation; frequency measurement device; least square based phase calibration; least square straight line; memory space; noisy environment; signal processing; unwrapped phase calibration; Calibration; Correlators; Frequency estimation; Memory management; Phase noise; DFD; Electronic warfare; IFM;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
SICE Annual Conference 2010, Proceedings of
Conference_Location :
Taipei
Print_ISBN :
978-1-4244-7642-8
Type :
conf
Filename :
5602930
Link To Document :
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