Extended symbol-aided estimation for non-selective Rayleigh fading channels

In this paper conventional symbol-aided estimation methods are extended to use not only the known pilot symbols but also previously estimated fading values to extract information of fading channels. The proposed estimation method is evaluated using theoretical analysis. Closed-form formulae are deri...

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Published in1997 IEEE 47th Vehicular Technology Conference. Technology in Motion Vol. 2; pp. 1039 - 1043 vol.2
Main Authors Le Hai Nam, Koyanagi, K., Sakaniwa, K.
Format Conference Proceeding
LanguageEnglish
Japanese
Published IEEE 22.11.2002
Subjects
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ISBN0780336593
9780780336599
ISSN1090-3038
DOI10.1109/VETEC.1997.600488

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Abstract In this paper conventional symbol-aided estimation methods are extended to use not only the known pilot symbols but also previously estimated fading values to extract information of fading channels. The proposed estimation method is evaluated using theoretical analysis. Closed-form formulae are derived for calculating the mean square estimation errors, which are then used to calculate the BER performance of a BPSK system employing the proposed estimation method. The results show a strong BER performance in the region of high signal to noise ratio under fast fading of the proposed system compared to that of the conventional system. Moreover, the proposed system still sustains its performance under mismatched conditions, where the conventional system degrades exhibiting error floors. Finally the theoretical results are verified by using computer simulations.
AbstractList In this paper conventional symbol-aided estimation methods are extended to use not only the known pilot symbols but also previously estimated fading values to extract information of fading channels. The proposed estimation method is evaluated using theoretical analysis. Closed-form formulae are derived for calculating the mean square estimation errors, which are then used to calculate the BER performance of a BPSK system employing the proposed estimation method. The results show a strong BER performance in the region of high signal to noise ratio under fast fading of the proposed system compared to that of the conventional system. Moreover, the proposed system still sustains its performance under mismatched conditions, where the conventional system degrades exhibiting error floors. Finally the theoretical results are verified by using computer simulations.
Author Sakaniwa, K.
Le Hai Nam
Koyanagi, K.
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Snippet In this paper conventional symbol-aided estimation methods are extended to use not only the known pilot symbols but also previously estimated fading values to...
SourceID ieee
SourceType Publisher
StartPage 1039
SubjectTerms Binary phase shift keying
Bit error rate
Computer errors
Computer simulation
Data mining
Degradation
Estimation error
Fading
Rayleigh channels
Signal to noise ratio
Title Extended symbol-aided estimation for non-selective Rayleigh fading channels
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Volume 2
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