DocumentCode :
1397348
Title :
Performance analysis of code-aided iterative carrier phase recovery in turbo receivers
Author :
Wu, NaiQi ; Wang, Huifang ; Li, Zuyi ; Kuang, Jingming
Author_Institution :
Sch. of Inf. & Electron., Beijing Inst. of Technol., Beijing, China
Volume :
6
Issue :
17
fYear :
2012
Firstpage :
2980
Lastpage :
2988
Abstract :
Code-aided (CA) iterative carrier phase synchroniser can greatly improve the accuracy of phase estimation in turbo receivers. However, because of the iteration involved between phase recovery and decoding, most existing studies depend on extensive simulations rather than on theoretical analysis to evaluate the performance improvement of phase recovery by exploiting the coding constraints. In this study, the authors propose analytical methods to fill this void. The first step is to approximate the cross-talks caused by phase offset as Gaussian noise at low signal-to-noise ratios. Then, a semi-analytical method is proposed to express the distribution of extrinsic information from channel decoder as a function of phase offset. Building on this model, both the open-loop and closed-loop performances of CA iterative phase synchronisers are derived in closed-form. The analytical results explicitly reveal how extrinsic information contributes to the performance of carrier phase estimation. Monte Carlo simulation results corroborate that the proposed methods are able to accurately characterise the performance of CA iterative carrier phase recovery for systems with different channel codes.
Keywords :
Gaussian noise; Monte Carlo methods; approximation theory; crosstalk; iterative decoding; phase coding; phase estimation; turbo codes; CA; Gaussian noise; Monte Carlo simulation; carrier phase estimation; channel decoder; closed-loop performance; code-aided iterative carrier phase recovery; code-aided iterative carrier phase synchroniser; crosstalk approximation; extrinsic information distribution; open-loop performance; performance evaluation; phase decoding; phase offset; phase offset function; phase recovery; semianalytical method; signal-to-noise ratio; turbo receiver;
fLanguage :
English
Journal_Title :
Communications, IET
Publisher :
iet
ISSN :
1751-8628
Type :
jour
DOI :
10.1049/iet-com.2012.0011
Filename :
6409548
Link To Document :
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