Title :
A High-Accuracy Parameter Estimation Algorithm for Jointless Frequency-Shift Track Circuit
Author :
Jin, Yu ; Zheng, Xifeng ; Ding, Tiefu
Author_Institution :
Fine Mech. & Phys., Chang Chun Inst. of Opt., Changchun
Abstract :
FSK (frequency shift keying) signal, which has advantages of narrow-bandwidth, strong anti-interference ability, long transmission distance and so on, is used in jointless frequency-shift track circuit to send different kinds of control signals. However, as FSK is non-linearly modulated, parameter estimation with high accuracy is hard to realize. Based on the spectrum analysis complement with time-frequency distribution, a high-accuracy FSK signal parameter estimation algorithm is put forward in this paper. According to the signal characteristics, under-sampling and ZFFT are used to improve the accuracy of spectrum analysis, and the base frequency resolution meets system requirement of 0.02 Hz. Wigner-Ville distribution has an excellent time-frequency concentration while serious cross-term interference at the same time. Through the design of kernel function, the cross-terms are almost suppressed and the upper/down side frequency resolution meets the system requirement of 0.2 Hz. The effectivities of all the methods mentioned above have been proved by MATLAB simulation, which pave a solid way for the development of high-accuracy FSK signal parameter estimation devices.
Keywords :
frequency shift keying; parameter estimation; spectral analysis; statistical distributions; Wigner-Ville distribution; anti-interference ability; control signal; cross-term interference; frequency resolution; frequency shift keying signal; high-accuracy parameter estimation; jointless frequency-shift track circuit; kernel function; signal characteristics; spectrum analysis; time-frequency distribution; Algorithm design and analysis; Circuits; Frequency estimation; Frequency shift keying; Interference; Parameter estimation; Signal analysis; Signal design; Signal resolution; Time frequency analysis; FSK signal; Wigner-Ville distribution; ZFFT; high-accuracy; under-sampling;
Conference_Titel :
Computing, Communication, Control, and Management, 2008. CCCM '08. ISECS International Colloquium on
Conference_Location :
Guangzhou
Print_ISBN :
978-0-7695-3290-5
DOI :
10.1109/CCCM.2008.180