DocumentCode
2280959
Title
Turbo receiver with hybrid interference cancellation for coded V-BLAST system
Author
Hu, Yang ; Yin, Changchuan ; Yue, Guangxin
Author_Institution
Beijing Univ. of Posts&Telecommun.
fYear
2005
fDate
15-17 Nov. 2005
Lastpage
5
Abstract
In this paper, we investigate and research turbo coding for Bell Lab´s Layered Space Time (BLAST) system and propose its encoding and decoding structure. Vertical BLAST (VBLAST) is a important method among BLAST to improve greatly system channel capacity, but because of its interference between transmit antennas, BER (FER) is sharply decreasing. At the receiver, we apply iterative ordered zero-forcing hybrid interference cancellation (IOZF-HIC). Comparing to ordered zero-forcing serial interference cancellation (OZF-SIC) and iterative zero-forcing parallel interference cancellation (IZF-PIC), IOZF-HIC provides better BER and FER performance with lower complexity. Soft-information through IOZF-HIC is sent to turbo iterative decoding and the resulting hard-information can be given to VBLAST again to provide prior information and renew soft-information of IOZF-HIC, then do again. So, turbo-VBLAST has the character of double-iterated concatenated decoding structure. The simulation results are presented to verify its advantages
Keywords
channel capacity; channel coding; concatenated codes; interference suppression; iterative decoding; radio receivers; radiofrequency interference; space-time codes; transmitting antennas; turbo codes; wireless channels; BER; Bell Labs Layered Space Time; channel capacity; coded V-BLAST system; double-iterated concatenated decoding; hybrid interference cancellation; iterative ordered zero-forcing; serial interference cancellation; transmit antennas; turbo iterative decoding; turbo receiver; Concatenated; Double-Iterated; IOZF-HIC; Turbo; VBALST;
fLanguage
English
Publisher
ieee
Conference_Titel
Mobile Technology, Applications and Systems, 2005 2nd International Conference on
Conference_Location
Guangzhou
Print_ISBN
981-05-4573-8
Type
conf
DOI
10.1109/MTAS.2005.207147
Filename
1656687
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