DocumentCode
1116682
Title
Performance Analysis of ML-Based Feedback Carrier Phase Synchronizers for Coded Signals
Author
Noels, Nele ; Steendam, Heidi ; Moeneclaey, Marc
Author_Institution
Telecommun. & Inf. Process. Dept., Ghent Univ.
Volume
55
Issue
3
fYear
2007
fDate
3/1/2007 12:00:00 AM
Firstpage
1129
Lastpage
1136
Abstract
This paper considers carrier phase recovery in transmission systems with an iteratively decodable error-control code [turbo codes, low-density parity check (LDPC) codes], whose large coding gains enable reliable communication at very low signal-to-noise ratio (SNR). We compare three types of feedback phase synchronizers, which are all based upon the maximum-likelihood (ML) estimation principle: a data-aided (DA) synchronizer, a non-code-aided (NCA) synchronizer, and an iterative code-aided (CA) synchronizer. We introduce a blockwise forward-backward recursive phase estimator, and we show that the mean-square phase error (MSPE) of the NCA synchronizer equals that of the DA synchronizer when the carrier phase is constant and the loop filter gain is the same for both synchronizers. When the signal is affected by phase noise, the NCA synchronizer (as compared with the DA synchronizer) yields a larger MSPE due to phase fluctuations. We also show that, at the normal operating SNR of the considered code, the performance of the CA synchronizer is very close to that of a DA synchronizer that knows all transmitted symbols in advance
Keywords
error correction codes; filtering theory; iterative decoding; maximum likelihood estimation; mean square error methods; parity check codes; phase estimation; synchronisation; turbo codes; LDPC codes; ML-based feedback carrier phase synchronizers; SNR; blockwise forward-backward recursive phase estimator; carrier phase recovery; coded signals; data-aided synchronizer; iterative code-aided synchronizer; iteratively decodable error-control code; loop filter gain; low-density parity check codes; maximum-likelihood estimation; mean-square phase error; noncode-aided synchronizer; signal-to-noise ratio; turbo codes; Feedback; Iterative decoding; Maximum likelihood decoding; Maximum likelihood estimation; Parity check codes; Performance analysis; Phase estimation; Recursive estimation; Signal to noise ratio; Turbo codes; Carrier synchronization; error control coding; feedback phase estimation;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/TSP.2006.887108
Filename
4099566
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