DocumentCode
2446456
Title
A Rapid Joint Semi-blind Estimation Algorithm for Carrier Phase and Timing Parameter
Author
Jianxi, Yang ; Yuan, Wang ; Liang, Chu
Author_Institution
Beijing Electron. Sci. & Technol. Inst., Beijing
fYear
2008
fDate
July 27 2008-Aug. 1 2008
Firstpage
335
Lastpage
339
Abstract
Multi-path effect in HF communication not only changes the amplitude, but changes the phase of receiving signal as well. The rapid and random movement of ionospheric causes the oscillation of the phase. It could be viewed as the Doppler shift of high-frequency carrier caused by ionospheric. The shift of frequency should be corrected because it brings difficulty in recovering the carrier. The non-blind method needs much quantities of training (or pilot frequency) sequences at the cost of system recourse (bandwidth). However, the blind estimation will wildly encounter the vague phase. In this paper, a semi-blind parameter estimation method is introduced which uses few training sequences to distinguish the carrier. In this way, the carrier´s phase and timing parameter could be recovered rapidly. Besides, this algorithm is easy to implement in hardware platform.
Keywords
HF radio propagation; channel estimation; ionospheric electromagnetic wave propagation; multipath channels; Doppler shift; HF communication; carrier phase; channel estimation; high-frequency carrier; ionospheric movement; multipath effect; nonblind method; phase oscillation; random movement; rapid joint semiblind estimation algorithm; timing parameter; training sequences; Adaptive equalizers; Blind equalizers; Circuits; Frequency estimation; Maximum likelihood estimation; Mobile communication; Parameter estimation; Phase estimation; Signal processing algorithms; Timing; HF communication; carrier; semi-blind estimation;
fLanguage
English
Publisher
ieee
Conference_Titel
Wireless and Mobile Communications, 2008. ICWMC '08. The Fourth International Conference on
Conference_Location
Athens
Print_ISBN
978-0-7695-3274-5
Electronic_ISBN
978-0-7695-3274-5
Type
conf
DOI
10.1109/ICWMC.2008.68
Filename
4591311
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