Title :
Frequency-Domain Turbo Equalisation in Coded SC-FDMA Systems: EXIT Chart Analysis and Performance
Author :
Zhang, Jiayi ; Yang, Lie-Liang ; Hanzo, Lajos
Author_Institution :
Sch. of ECS, Univ. of Southampton, Southampton, UK
Abstract :
In this paper, we investigate the achievable performance of channel coded single-carrier frequency-division multiple-access (SC-FDMA) systems employing various detection schemes, when communicating over frequency-selective fading channels. Specifically, three types of minimum mean-square error (MMSE) based frequency-domain (FD) turbo equalisers are considered. The first one is the turbo FD linear equaliser (LE). The second one is a parallel interference cancellation (PIC)-assisted turbo FD decision-feedback equaliser (DFE). The final one is the proposed hybrid interference cancellation (HIC)-aided turbo FD-DFE, which combines successive interference cancellation (SIC) with iterative PIC and decoding. The benefit of interference cancellation (IC) is analysed with the EXtrinsic Information Transfer (EXIT) charts. The performance of the coded SC-FDMA systems employing the above-mentioned detection schemes is investigated with the aid of simulations. Our studies show that the IC techniques achieve an attractive performance at a moderate complexity.
Keywords :
channel coding; decision feedback equalisers; decoding; fading channels; frequency division multiple access; frequency-domain analysis; interference suppression; least mean squares methods; turbo codes; EXIT chart analysis; HIC; IC techniques; MMSE; channel coded single-carrier frequency-division multiple-access systems; coded SC-FDMA systems; decoding; detection schemes; extrinsic information transfer chart; frequency-domain turbo equalisation; frequency-selective fading channels; hybrid interference cancellation aided turbo FD-DFE; iterative PIC; minimum mean-square error; parallel interference cancellation assisted turbo FD decision-feedback equaliser; successive interference cancellation; turbo FD linear equaliser; Decision feedback equalizers; Decoding; Discrete Fourier transforms; Forward error correction; Iterative decoding; Silicon carbide;
Conference_Titel :
Vehicular Technology Conference (VTC Fall), 2012 IEEE
Conference_Location :
Quebec City, QC
Print_ISBN :
978-1-4673-1880-8
Electronic_ISBN :
1090-3038
DOI :
10.1109/VTCFall.2012.6399199