DocumentCode
1036340
Title
Joint Turbo Frequency Domain Equalization and Carrier Synchronization
Author
Sabbaghian, Maryam ; Falconer, David
Author_Institution
Carleton Univ., Ottawa
Volume
7
Issue
1
fYear
2008
Firstpage
204
Lastpage
212
Abstract
In this paper we propose a synchronization method to compensate for the effect of frequency offset and phase noise generated by local oscillator instabilities for a Turbo Frequency Domain Equalizer (TFDE). TFDE is considered as an efficient equalization method which benefits from both good performance of iterative systems and reasonable complexity due to performing equalization in the frequency domain. We propose a joint turbo equalization and synchronization method in which the feedback information, generated iteratively by the decoder, is used for synchronization. As iterations continue, if the feedback information becomes more reliable, the performance of the synchronization method is continually improved. We propose two methods based on different criteria when the system suffers from only frequency offset. We also suggest a method based on Maximum A Posteriori (MAP) criterion in the presence of both frequency offset and phase noise which can be considered as a decision directed phase lock loop. These methods achieve considerable performance improvement with reasonable complexity.
Keywords
equalisers; frequency-domain analysis; iterative decoding; maximum likelihood estimation; phase locked loops; synchronisation; turbo codes; MAP criterion; Maximum A Posteriori criterion; TFDE; carrier synchronization; decision directed phase lock loop; decoder; feedback information; frequency offset; iterative systems; local oscillator instabilities; phase noise; turbo frequency domain equalization; Discrete Fourier transforms; Equalizers; Feedback; Frequency domain analysis; Frequency synchronization; Iterative decoding; Local oscillators; OFDM; Phase noise; Samarium;
fLanguage
English
Journal_Title
Wireless Communications, IEEE Transactions on
Publisher
ieee
ISSN
1536-1276
Type
jour
DOI
10.1109/TWC.2008.060451
Filename
4432262
Link To Document