Digital signal processing method for eliminating glitch interference signals
A digital signal processing and interference signal technology, applied in the field of signal noise reduction, can solve the problems of signal waveform phase difference, useful information loss in time domain waveform, etc.
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Embodiment 1
[0034] This embodiment proposes a digital signal processing method for eliminating burr interference signals, such as figure 1 , figure 2 As shown, firstly, the original signal f(t) is generated through wavelet noise reduction and mean value filtering to generate the amplitude modulation wave z(t), and then the amplitude modulation wave z(t) is used to perform amplitude modulation with the original signal f(t), Obtain the signal F(t) after eliminating the glitch interference.
[0035] In order to better realize the present invention, further, the specific operation of the wavelet noise reduction is: perform three-layer analysis on an original signal f(t) containing N data points to obtain a three-layer analysis signal, and select the three-layer analysis Extract the single hierarchical analysis signal with the best signal-to-noise ratio in the signal, and name it as the analysis signal x; according to the principle of wavelet analysis, the analysis signal x is a one-dimensio...
Embodiment 2
[0054] This embodiment is on the basis of above-mentioned embodiment 1, as image 3 , Figure 4 , Figure 5 , Image 6 , Figure 7 as shown, image 3 Shown is a waveform diagram of the original signal. according to figure 2 As shown in the signal processing flow, first the original signal is processed in Step 1: sub-step A performs wavelet analysis on the original signal, and the results are shown in Figure 4 shown. Figure 4 It is shown that the signal-to-noise ratio of layer a1 is the best, so the signal data of layer a1 is selected for the processing of sub-step B, in which the value of the operation step n of each mean value operation is 80, and the obtained results are as follows Figure 5 as shown, Figure 5 It shows that the glitch signal has been suppressed obviously. Figure 5 After the signal shown is processed by sub-step C, a standardized signal with all data values falling in the interval [0,1] is obtained, such as Image 6 shown. according to fig...
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