DocumentCode :
1026282
Title :
Generalized layered space-time codes for high data rate wireless communications
Author :
Tao, Meixia ; Cheng, Roger S.
Author_Institution :
Dept. of Electr. & Electron. Eng., Hong Kong Univ. of Sci. & Technol., Kowloon, China
Volume :
3
Issue :
4
fYear :
2004
fDate :
7/1/2004 12:00:00 AM
Firstpage :
1067
Lastpage :
1075
Abstract :
We present the architecture of generalized layered space-time codes (GLST) as a combination of Bell Labs layered space-time (BLAST) architecture and space-time coding (STC) in multiple-antenna wireless communication systems. This approach provides both spectral and power efficiency with moderate complexity. The framework is to partition all the available transmit antennas into groups and apply STC on each group as component codes. Based on the mappings from coded symbols to transmit antenna groups, we can construct different GLST systems. Particularly, horizontal mapping and diagonal mapping are introduced and referred to as HGLST and DGLST respectively. The basic decoding of GLST, under quasi-static flat Rayleigh fading environments and assuming perfectly known channel state information (CSI) at the receiver, combines group interference suppression and group interference cancellation techniques. As a result, the individual STC on each group is decoded serially. To improve the overall system performance, we derive the optimal power allocation among all space-time codewords without requiring the knowledge of CSI at the transmitter and suitable for all GLST systems. We also derive the optimal serial decoding order based on the channel realizations at the receiver for HGLST systems without power allocation. Simulation results show that both can provide much improvement. To further enhance the system performance, we propose a low complexity hard-decision iterative decoding method. This method efficiently exploits full receive antenna diversity and, hence, dramatically improves the system performance which is confirmed by simulation.
Keywords :
MIMO systems; Rayleigh channels; antenna arrays; data communication; diversity reception; interference suppression; iterative decoding; radio networks; radio receivers; radio transmitters; radiofrequency interference; space-time codes; transmitting antennas; BLAST architecture; Bell labs layered space-time architecture; MIMO system; channel state information; diagonal mapping; generalized layered space-time code; group interference cancellation; group interference suppression; high data rate wireless communication; horizontal mapping; low complexity hard-decision iterative decoding method; moderate complexity; multiple antenna wireless communication system; multiple input multiple output system; optimal serial decoding order; power allocation; power efficiency; quasistatic flat Rayleigh fading environment; receive antenna diversity; spectral efficiency; transmit antennas; Antenna accessories; Channel state information; Interference cancellation; Interference suppression; Iterative decoding; Rayleigh channels; Space time codes; System performance; Transmitting antennas; Wireless communication; BLAST; Bell Labs layered space–time; MIMO; architecture; diversity; layered space–time architecture; multi-input multi-output; space–time coding; systems;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2004.828013
Filename :
1310298
Link To Document :
بازگشت