A novel symbol rate estimation algorithm for phase modulating signals in wireless communications

Peng Zhou,Chisheng Li

Applied Mechanics and Materials(2014)

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Abstract
In this paper, we proposed a new symbol rate estimation algorithm for phase shift keying (PSK) and qua drawtube amplitude modulation (QAM) signals in AWGN channel First we constructe a delay-multiplied signal, from which we obtaine the modulated information. Then we calculated the instantaneous autocorrelation of the delay-multiplied signal to pick out the phase jump. To eliminate the restriction of frequency resolution in fast Fourier transform, we performed a Chirp-Z transform to find out the exact spectral line which represente the symbol rate of the signal to be analyzed. Compared with the existing algorithms, it is a simple solution that has a better performance and accuracy in low signal-to-noise-ratio channel conditions. Simulation results show that the probability of relative estimating deviation below 0.1% reaches 100% and the average and standard variance of absolute estimation deviation are at the magnitude of 10(-2) when SNR is over 2dB.
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Key words
Symbol Rate Estimation,Phase Modulating Signals,Delay-Multiplied Signal,Instantaneous Autocorrelation,Chirp-Z Transform
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