DocumentCode :
1045654
Title :
Coherent Detection for T-DMB Receivers in Hierarchical Modulation Mode
Author :
Kim, Ji-Hyun ; Lee, Ji-Bong ; Kim, Hyoung-Nam ; Lim, Hyoungsoo ; Lim, Jong Soo
Author_Institution :
Pusan Nat. Univ., Pusan
Volume :
53
Issue :
2
fYear :
2007
fDate :
5/1/2007 12:00:00 AM
Firstpage :
294
Lastpage :
299
Abstract :
Hierarchical modulation has been considered for achieving higher data rates in Terrestrial-DMB (T-DMB) systems, which yields man-made noise caused by the shortened symbol distance. Such noise may produce a serious problem on a fast-fading channel for the proper operation of conventional T-DMB receivers using noncoherent differential detection because it can increase the required SNR larger than the securable SNR of the receivers. To overcome the weakness of being susceptible to fast fading of the noncoherent detection, we propose a novel decision-directed channel estimation method for the coherent detection of phase correction. In the proposed method, least-squares channel estimation is carried out with hard-decision symbols due to the absence of known pilots and then the estimated coefficients are exponentially averaged using a forgetting factor to compensate for the probable inaccuracy of the instantaneous estimation. Simulation results show that the proposed method secures higher data-rate transmission of advanced T-DMB systems by reducing the degradation caused by hierarchical modulation and fast fading.
Keywords :
broadcasting; channel estimation; differential detection; fading channels; least squares approximations; multimedia communication; radio receivers; T-DMB receivers; decision-directed channel estimation method; fast-fading channel; hard-decision symbols; hierarchical modulation mode; least-squares channel estimation; noncoherent differential detection; phase correction; terrestrial-DMB; Bit error rate; Channel estimation; Degradation; Digital audio broadcasting; Digital multimedia broadcasting; Fading; Liquid crystal displays; OFDM modulation; Phase detection; Signal to noise ratio;
fLanguage :
English
Journal_Title :
Consumer Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0098-3063
Type :
jour
DOI :
10.1109/TCE.2007.381690
Filename :
4266903
Link To Document :
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