DocumentCode :
1994845
Title :
Performance of frequency recovery algorithms for a poly-polarization multiplexing satellite system
Author :
Webber, Julian ; Yofune, Masanori ; Yano, Ken´ichi ; Ban, H. ; Kobayashi, Kaoru
Author_Institution :
Wave Eng. Labs., Adv. Telecommun. Res. Int., Kyoto, Japan
fYear :
2013
fDate :
26-28 Nov. 2013
Firstpage :
166
Lastpage :
171
Abstract :
Frequency recovery is a critical element in virtually all high data-rate communications systems, and in order to enhance the performance of our recently proposed poly-polarization multiplexing (PPM) satellite system, we have investigated the performance benefits of distributing the unique word (UW) symbols. The mean square error is calculated for different correlation based algorithms with increasing pilot spacing. We show that pilot separation provides an additional means to improve performance without increasing latency or complexity. A modified estimator is also proposed that can operate with an arbitrary UW symbol spacing and increased frequency offset range. The estimator performances are compared for different UW lengths, averaging sizes and pilot separation. A 0.67 dB gain was achieved at the BER of 1E-6 as pilot separation was increased from 4 to 8 using a modified L&R algorithm with LDPC and UW length 64.
Keywords :
error statistics; frequency estimation; mean square error methods; multiplexing; parity check codes; polarisation; satellite communication; 1E-6; BER; LDPC; Luis & Reggiannini algorithm; PPM satellite system; UW lengths; UW symbols; correlation based algorithms; frequency offset range; frequency recovery algorithms; gain 0.67 dB; high data-rate communications systems; low density parity check; mean square error; modified L&R algorithm; modified estimator; pilot separation; pilot spacing; poly-polarization multiplexing satellite system; unique word symbols; word length 64 bit; Bit error rate; Correlation; Estimation; Frequency estimation; Multiplexing; Parity check codes; Satellites; frequency offset estimation; performance investigation; polarization multiplexing; satellite communications; unique word;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications (MICC), 2013 IEEE Malaysia International Conference on
Conference_Location :
Kuala Lumpur
Type :
conf
DOI :
10.1109/MICC.2013.6805819
Filename :
6805819
Link To Document :
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