A timing recovery algorithm for filter-bank multicarrier wireless systems

Filter bank (FB) multicarrier modulation exhibits several properties which make it an attractive approach not only for high speed copper wire communications networks but also for broadband wireless applications. In this paper, we derive a non data aided timing offset recovery algorithm for wireless...

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Veröffentlicht in:2004 IEEE 59th Vehicular Technology Conference Jg. 2; S. 1082 - 1086 Vol.2
Hauptverfasser: Saccomando, C., Luise, M., Lottici, V., Spalla, F.
Format: Tagungsbericht
Sprache:Englisch
Veröffentlicht: Piscataway, N.J IEEE 2004
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ISBN:0780382552, 9780780382558
ISSN:1550-2252
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Abstract Filter bank (FB) multicarrier modulation exhibits several properties which make it an attractive approach not only for high speed copper wire communications networks but also for broadband wireless applications. In this paper, we derive a non data aided timing offset recovery algorithm for wireless FB-based systems. The estimator is based on a maximum likelihood approach and has a feedback loop structure. A number of proper simplifications make the problem tractable and allow us to reduce the computational complexity. The algorithm accuracy is examined by computer simulation for AWGN and frequency selective multipath channels showing a considerable robustness against frequency errors.
AbstractList Filter bank (FB) multicarrier modulation exhibits several properties which make it an attractive approach not only for high speed copper wire communications networks but also for broadband wireless applications. In this paper, we derive a non data aided timing offset recovery algorithm for wireless FB-based systems. The estimator is based on a maximum likelihood approach and has a feedback loop structure. A number of proper simplifications make the problem tractable and allow us to reduce the computational complexity. The algorithm accuracy is examined by computer simulation for AWGN and frequency selective multipath channels showing a considerable robustness against frequency errors.
Author Lottici, V.
Saccomando, C.
Spalla, F.
Luise, M.
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Keywords Fading channels
Bank system
AWGN
Computer simulation
Wireless telecommunication
Multicarrier
Algorithm
Computational complexity
Clock recovery
Multicarrier modulation
Frequency selection
Wide band
Algorithm performance
Telecommunication network
Filter bank
Robustness
Maximum likelihood
Language English
License CC BY 4.0
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PublicationTitle 2004 IEEE 59th Vehicular Technology Conference
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Snippet Filter bank (FB) multicarrier modulation exhibits several properties which make it an attractive approach not only for high speed copper wire communications...
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StartPage 1082
SubjectTerms Applied sciences
Communication networks
Computational complexity
Computer simulation
Copper
Detection, estimation, filtering, equalization, prediction
Exact sciences and technology
Feedback loop
Filter bank
Frequency
Information, signal and communications theory
Maximum likelihood estimation
Modulation, demodulation
Signal and communications theory
Signal, noise
Systems, networks and services of telecommunications
Telecommunications
Telecommunications and information theory
Timing
Transmission and modulation (techniques and equipments)
Wire
Title A timing recovery algorithm for filter-bank multicarrier wireless systems
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Volume 2
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