Title :
Joint symbol, frame, and carrier synchronization for Eureka 147 DAB system
Author :
Chorng-Ren Sheu ; Huang, Yung-Liang ; Huang, Chia-Chi
Author_Institution :
Dept. of Commun. Eng., Nat. Chiao Tung Univ., Hsinchu, Taiwan
Abstract :
We present a joint symbol, frame, and carrier synchronization method for an OFDM signal in this paper. Symbol timing is determined first by detecting an abrupt phase change in the autocorrelation of the last quarter (e.g. Eureka 147 DAB) useful symbol and its cyclic extension in the guard interval. Frequency offset of fractional carrier spacing can be estimated from the phase angle of this autocorrelation. Coarse frame synchronization or null symbol detection can also be achieved through this information. Frequency offset of integral carrier spacing and finer frame synchronizations are determined by convolution of a received phase reference symbol and several locally generated but frequency shifted phase reference symbols. Our simulation results show that this symbol timing estimation method is less sensitive to multipath fading and the frequency offset estimation is more accurate in mobile radio channels. We also show that the algorithm is robust in both AWGN and two-path fading channels for SNR down to about 8 dB
Keywords :
Gaussian channels; convolution; correlation methods; digital audio broadcasting; fading; frequency division multiplexing; land mobile radio; multipath channels; signal detection; synchronisation; timing; AWGN channels; Eureka 147 DAB system; OFDM signal; SNR; abrupt phase change detection; autocorrelation; carrier synchronization; convolution; digital communication system; fractional carrier spacing; frame synchronization; frequency offset; frequency offset estimation; frequency shifted phase reference symbols; guard interval; integral carrier spacing; mobile radio channels; multipath fading; null symbol detection; phase angle; received phase reference symbol; simulation results; symbol synchronization; symbol timing; symbol timing estimation method; two-path fading channels; Autocorrelation; Convolution; Fading; Frequency estimation; Frequency synchronization; Land mobile radio; OFDM; Phase detection; Phase estimation; Timing;
Conference_Titel :
Universal Personal Communications Record, 1997. Conference Record., 1997 IEEE 6th International Conference on
Conference_Location :
San Diego, CA
Print_ISBN :
0-7803-3777-8
DOI :
10.1109/ICUPC.1997.627253