Title :
Iterative multiuser detection for asynchronous CDMA with concatenated convolutional coding
Author :
Qin, Zhiliang ; Teh, Kah Chan ; Gunawan, Erry
Author_Institution :
Sch. of Electr. & Electron. Eng., Nanyang Technol. Inst., Singapore
fDate :
9/1/2001 12:00:00 AM
Abstract :
We propose iterative multiuser detectors for asynchronous code-division multiple-access with parallel-concatenated convolutional codes (turbo codes) and with serially concatenated convolutional codes (SCCC). At each iteration we update and exchange the extrinsic information from the multiuser detector and channel decoders and regenerate soft information between constituent convolutional decoders. Simulation results show that with the proposed structure, near-single-user performance can be achieved. We also propose two reduced-complexity techniques, i.e., the reduced-state iterative multiuser detector based on the T-MAP algorithm and the iterative interference canceler based on a noise-whitening filter. Simulation results show a small performance degradation for these two techniques, particularly for the T-MAP receiver
Keywords :
code division multiple access; concatenated codes; convolutional codes; filtering theory; interference suppression; iterative decoding; multiuser channels; radio receivers; radiofrequency interference; signal detection; spread spectrum communication; turbo codes; T-MAP algorithm; T-MAP receiver; asynchronous DS-CDMA; asynchronous code-division multiple-access; channel decoders; convolutional decoders; iterative decoding; iterative interference canceler; iterative multiuser detection; near-single-user performance; noise-whitening filter; parallel-concatenated convolutional codes; reduced-complexity techniques; reduced-state iterative multiuser detector; serially concatenated convolutional codes; simulation results; soft information regeneration; turbo codes; Concatenated codes; Convolutional codes; Detectors; Interference cancellation; Iterative algorithms; Iterative decoding; Multiaccess communication; Multiuser detection; Noise reduction; Turbo codes;
Journal_Title :
Selected Areas in Communications, IEEE Journal on