A Chip Width Estimation Method for DS Signals
A signal code and width technology, which is applied in the estimation of the chip width of the direct spread signal and the estimation of the chip width of the direct spread signal, can solve the problems of low estimation accuracy, performance degradation, and low signal-to-noise ratio, and achieves high estimation accuracy, Effects of slow computation and low signal-to-noise ratio floor
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[0044] The simulation signal parameters are: sampling frequency f s =50KHz, carrier frequency f 0 = 5.0kHz, the order of the pseudo-code is 5, the two-phase modulation method is adopted, the number of carrier cycles in one chip is 8, the chip width is 1.6ms, the number of discrete sampling points is 80 points, and the signal amplitude is A 0 = 1, superimposed zero-mean Gaussian white noise, variance σ 2 The size of is determined by the signal-to-noise ratio SNR:
[0045] figure 2 with image 3are the results of sorting the zero-crossing intervals of the baseband signal from small to large under the conditions of no noise and -5dB SNR respectively. from figure 2 It can be seen that after the zero-crossing intervals are sorted from small to large, the occurrence probability of zero-crossing intervals obeys the pseudo-code run-length distribution characteristics, and the interval with a sampling length of 80 has the highest probability of occurrence. According to the max...
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