DocumentCode :
2657166
Title :
Timing and Phase Offset Sensitivity of Autocorrelation Based Frequency Estimation in an FH-OFDM System
Author :
Anttonen, Antti ; Siltala, Sami ; Mämmelä, Aarne
Author_Institution :
VTT Tech. Res. Centre of Finland, Oulu
fYear :
2007
fDate :
22-25 April 2007
Firstpage :
2379
Lastpage :
2383
Abstract :
In this paper, a new aspect on the problem of carrier frequency offset (CFO) estimation is studied in a frequency-hopping (FH) orthogonal frequency division multiplexing (OFDM) system. Unlike in a traditional nonhopped OFDM system, in FH-OFDM system it is important to verify how accurately frequency-switching must be performed before the CFO estimation can take place with adequate performance. The accuracy of frequency-switching is evaluated through frequency-hopping timing offset (FHO) and frequency-hopping phase offset (PHO) between the received signal and the signal produced by the local frequency-hopping synthesizer of the receiver. The target system uses ultra-wideband (UWB) in order to achieve very high data rate of 1.6 Gbit/s. The performance of selected autocorrelation based algorithms is simulated in multipath fading channel under the FHO and PHO, and the results are compared to the performance of ideal frequency-switching and the corresponding analytical Cramer-Rao bound. It is found that the CFO estimators based on autocorrelation principle are quite robust to the FHO less than half the hopping period. Furthermore, simple methods are proposed to compensate the degradation caused by the FHO. The estimators are, however, sensitive to the PHO caused by the possible lack of phase memory in the frequency-hopping synthesizer resulting in a significant bias to the CFO estimate.
Keywords :
OFDM modulation; correlation methods; fading channels; frequency estimation; frequency hop communication; multipath channels; ultra wideband communication; Cramer-Rao bound; FH-OFDM system; UWB; autocorrelation; carrier frequency offset estimation; frequency estimation; frequency-hopping orthogonal frequency division multiplexing; frequency-hopping phase offset; frequency-hopping timing offset; frequency-switching; multipath fading channel; phase offset sensitivity; ultra-wideband system; Analytical models; Autocorrelation; Fading; Frequency estimation; Frequency synthesizers; OFDM; Performance analysis; Phase estimation; Timing; Ultra wideband technology;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vehicular Technology Conference, 2007. VTC2007-Spring. IEEE 65th
Conference_Location :
Dublin
ISSN :
1550-2252
Print_ISBN :
1-4244-0266-2
Type :
conf
DOI :
10.1109/VETECS.2007.491
Filename :
4212919
Link To Document :
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