An Adaptive Denoising Method for Discontinuous Communication Signals under Multiple Interference Conditions
A communication signal, discontinuous technology, used in baseband system components, shaping networks in transmitters/receivers, etc., can solve problems such as unsatisfactory filtering effects, achieve strong suppression, and eliminate fixed frequency noise.
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[0025] figure 1 It is the schematic diagram of the implementation of fixed frequency noise and random noise cancellation. Assuming that the known communication signal s(t) is a sinusoidal signal, the existence time is T, that is, the communication time is T seconds; the noise is a fixed frequency sinusoidal noise s 0 (t) and white noise n 0 (t) mixed noise, and always exists. Through simulation, the communication signal s(t), noise s 0 (t)+n 0 (t) and signal plus noise s 0 (t)+n 0 The time domain waveform of (t)+s(t) is as follows figure 2 As shown, their frequency domain waveforms are shown as image 3 , Figure 4 , Figure 5 shown.
[0026] First, for s 0 (t)+n 0 (t)+s(t) for delay t 1 , will delay t 1 and undelayed s 0 (t)+n 0 (t)+s(t) are respectively connected to the Input end and the Desired end of the adaptive filter 1. where t 1 0 (t), get n 0 (t). The time-domain waveforms of the Desired, Input, and Error signals of adaptive filter 1 are as follow...
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