Pilot Directed Continuous Synchronization of OFDM

Model of a generic OFDM system with closed loop control of carrier and timing recovery.
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Actualizado 1 sep 2016

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This model implements a generic OFDM TX and RX, which is not tied to any particular industry standard. The objective of this model is to develop and explore a continuous (not “bursty”) carrier and timing tracking synchronization scheme. The techniques incorporated can then be extended and modified to suite specific communications standards. The model uses an “acquisition” technique that exploits the correlation properties of the cyclic prefix to get a rough estimate of the frame boundary before attempting to accomplish the fine tracking algorithms. The model implements a 64 carrier OFDM waveform with a 16 point cyclic prefix. The OFDM symbol has 16 pilots, 3 guard tones (0 amplitude at band edge) and uses 4 QAM for the 45 remaining data streams.
This latest model includes a fading channel, BER computation, and improved control loop dynamics.

Citar como

Dick Benson (2024). Pilot Directed Continuous Synchronization of OFDM (https://www.mathworks.com/matlabcentral/fileexchange/18932-pilot-directed-continuous-synchronization-of-ofdm), MATLAB Central File Exchange. Recuperado .

Compatibilidad con la versión de MATLAB
Se creó con R2014b
Compatible con cualquier versión
Compatibilidad con las plataformas
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Agradecimientos

Inspirado por: Carrier & Symbol Timing Recovery for N QAM

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Versión Publicado Notas de la versión
1.9.0.1

Updated license

1.9.0.0

Updated for R2014b.

1.7.0.0

The model has been modified for compliance with changes in R2013B.

1.6.0.0

Updated for R2009B

1.5.0.0

Edited to run in R2009B.

1.4.0.0

Updated to run with R2009B

1.3.0.0

Updated to run with R2009B.

1.2.0.0

More tuning of phase slope and offset estimators for improved signal acquisition.

1.1.0.0

This latest model includes a fading channel, BER computation, and improved control loop dynamics.

1.0.0.0

Minor update of a scope display format and changes to keywords/ summary.