Robust time-frequency synchronization for OFDM mobile applications
Orthogonal frequency division multiplexing (OFDM) has become a popular multicarrier transmission scheme for transmission of data requiring high data rates. We present a digital synchronization technique that provides accurate timing and frequency tracking estimates for severely degraded and noisy ch...
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| Published in | ISSPA '99 : proceedings of the Fifth International Symposium on Signal Processing and its Applications, August 22-25, 1999, Brisbane Convention & Exhibition Centre, Queensland, Australia Vol. 1; pp. 423 - 426 vol.1 |
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| Main Authors | , |
| Format | Conference Proceeding |
| Language | English |
| Published |
IEEE
1999
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| Subjects | |
| Online Access | Get full text |
| ISBN | 9781864354515 1864354518 |
| DOI | 10.1109/ISSPA.1999.818202 |
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| Abstract | Orthogonal frequency division multiplexing (OFDM) has become a popular multicarrier transmission scheme for transmission of data requiring high data rates. We present a digital synchronization technique that provides accurate timing and frequency tracking estimates for severely degraded and noisy channel environments. In addition, the synchronization technique can correct large timing misalignment of the received OFDM symbols, and provides acquisition of frequency offsets on the order of multiple sub-channel spacings. Algorithm complexity is minimized by deriving timing and frequency error estimates from the same basic algorithm, making it suitable to handheld radios. The estimation accuracy is excellent, even for very low signal-to-noise ratios. The algorithmic converges within one baud interval, and thus provides a good solution for systems requiring rapid acquisition and symbol timing alignment at system startup. |
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| AbstractList | Orthogonal frequency division multiplexing (OFDM) has become a popular multicarrier transmission scheme for transmission of data requiring high data rates. We present a digital synchronization technique that provides accurate timing and frequency tracking estimates for severely degraded and noisy channel environments. In addition, the synchronization technique can correct large timing misalignment of the received OFDM symbols, and provides acquisition of frequency offsets on the order of multiple sub-channel spacings. Algorithm complexity is minimized by deriving timing and frequency error estimates from the same basic algorithm, making it suitable to handheld radios. The estimation accuracy is excellent, even for very low signal-to-noise ratios. The algorithmic converges within one baud interval, and thus provides a good solution for systems requiring rapid acquisition and symbol timing alignment at system startup. |
| Author | Humphrey, M.E. Kleider, J.E. |
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| PublicationTitle | ISSPA '99 : proceedings of the Fifth International Symposium on Signal Processing and its Applications, August 22-25, 1999, Brisbane Convention & Exhibition Centre, Queensland, Australia |
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| Snippet | Orthogonal frequency division multiplexing (OFDM) has become a popular multicarrier transmission scheme for transmission of data requiring high data rates. We... |
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| StartPage | 423 |
| SubjectTerms | Bit error rate Degradation Frequency estimation Frequency synchronization OFDM modulation Robustness Semiconductor device noise Signal processing algorithms Time frequency analysis Timing |
| Title | Robust time-frequency synchronization for OFDM mobile applications |
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