DocumentCode
1297812
Title
Design of distributed unique words for enhanced frame synchronization
Author
Villanti, M. ; Iubatti, M. ; Vanelli-Coralli, A. ; Corazza, G.E.
Author_Institution
DEIS (Dept. of Electron., Comput. Sci., & Syst.), Univ. of Bologna, Bologna, Italy
Volume
57
Issue
8
fYear
2009
Firstpage
2430
Lastpage
2440
Abstract
A novel approach is introduced for the design of a unique word (UW) for frame synchronization in time division multiplexing/time division multiple access (TDM/TDMA) systems. In particular, the UW symbols are distributed in each frame in a specific pattern in order to optimize the UW autocorrelation properties. The distribution patterns are scalable, since they preserve their autocorrelation properties under truncation. The resulting frame structure enables the use of several types of UWs, including the silent-UW (SUW) and the unit-UW (UUW), that are novel approaches for which the optimal Bayes detector is derived. An analytical performance characterization is presented along with comparisons with state-of-the-art alternatives. We show that SUW can significantly outperform the classic UW in the presence of frequency offsets or whenever data interference is the main impairment to cope with, i.e. at moderate to high signal to noise ratios. Interestingly, this performance improvement comes with the further advantage of a considerable complexity reduction. Hence UUW is shown to provide both performance improvement and complexity reduction.
Keywords
Bayes methods; synchronisation; time division multiple access; time division multiplexing; TDM/TDMA systems; autocorrelation properties; data interference; distributed unique words; frame synchronization; optimal Bayes detector; silent-UW; time division multiple access; time division multiplexing; unit-UW; AWGN; Autocorrelation; Detectors; Frequency synchronization; Interference; Maximum likelihood detection; Maximum likelihood estimation; Signal to noise ratio; Time division multiple access; Time division multiplexing; Frame synchronization, distributed patterns, sequence design, silent unique word, unit unique word;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2009.08.070655
Filename
5201036
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