Publication | Closed Access
Enhanced Timing Advanced Estimation With Symmetric Zadoff-Chu Sequences for Satellite Systems
45
Citations
8
References
2015
Year
EngineeringGlobal Navigation Satellite SystemTiming Advanced EstimationSpectrum EstimationSignal IntegrityOrbit DeterminationCalibrationZadoff-chu SequencesTiming AnalysisSystems EngineeringTimefrequency AnalysisSynthetic Aperture RadarSatellite Signal ProcessingComputer EngineeringAdvanced EstimationSignal ProcessingSatellite Navigation SystemsRadarAerospace EngineeringSatellite SystemsSymmetric Zadoff-chu Sequences
Timing advanced estimation with Zadoff-Chu sequences is sensitive to the frequency offset, especially for satellite systems with large Doppler shift and oscillator uncertainties. In this letter, Timing Advanced Estimation with Symmetric Zadoff-Chu sequences (TAE-SZC) is proposed to deal with the integer and fractional frequency offset, respectively. By adopting TAE-SZC, the effect of integer frequency offset can be resolved by the symmetric properties of Zadoff-Chu sequences, and an iterative compensation method is used to mitigate the effect of fractional frequency offset. Simulation results show that TAE-SZC outperforms the conventional timing advanced estimation methods without incurring additional consumption of time/frequency resource.
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