Title :
MLSE receiver with bi-directional extended window for EDGE systems using STBC in frequency-selective fading channels
Author :
Li, Zhenhong ; Wang, Haifeng
Author_Institution :
VTT Electron., Oulu, Finland
Abstract :
For EDGE systems with transmit diversity in frequency-selective channels, the orthogonality of space time block coding (STBC) is ruined by the delay spreads of multipath channels and the interference is enhanced by the multi-antenna transmission respectively. The enhanced cochannel and co-antenna interference cannot be suppressed by the conventional equalization. In this paper a maximum likelihood sequence estimation (MLSE) receiver with a bi-directional extended window and multistage processing is proposed to restore the diversity gain. The window is initiated from the known midamble and alternately extended to backward and forward data slots by a step equal to the STBC block size. Only new symbols included in the window are estimated by the MLSE and then the bi-directional window is further extended until all the data burst is estimated. The numerical results show that the proposed scheme can efficiently suppress the co-antenna interference and restore the transmit diversity.
Keywords :
block codes; cellular radio; channel coding; cochannel interference; data communication; delay estimation; equalisers; fading channels; interference suppression; maximum likelihood sequence estimation; multipath channels; packet radio networks; radio receivers; space-time codes; EDGE systems; MLSE receiver; STBC; backward data slots; bi-directional extended window; block size; co-antenna interference; cochannel interference; data burst estimation; delay spreads; equalization; forward data slots; frequency-selective fading channels; interference suppression; known midamble; maximum likelihood sequence estimation; multi-antenna transmission; multipath channels; multistage processing; orthogonality; space time block coding; transmit diversity; Bidirectional control; Delay effects; Diversity methods; Frequency; Frequency-selective fading channels; GSM; Interference suppression; Maximum likelihood estimation; Receiving antennas; Transceivers;
Conference_Titel :
Personal, Indoor and Mobile Radio Communications, 2002. The 13th IEEE International Symposium on
Print_ISBN :
0-7803-7589-0
DOI :
10.1109/PIMRC.2002.1046511