Noise suppression device and method for gas concentration detection signal in a glass bottle
A technology for gas concentration detection and noise suppression, which is applied in the measurement of color/spectral characteristics, frequency selection two-terminal-pair network, multi-terminal-pair network, etc. , the effect of suppressing uncertainty noise
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Embodiment 1
[0056] In this embodiment, the wavelength modulation-based tunable semiconductor laser absorption spectroscopy (TDLAS / WMS) technology is used to detect the gas concentration in the glass bottle. refer to figure 1 The gas concentration detection device in the glass bottle in the present embodiment 1 comprises a laser controller 10, a laser emitter 11 connected to the laser controller 10, a glass bottle 12, a photodetector 13, and a laser detector connected to the photodetector 13. The signal demodulation part 14. The laser controller 10 includes a temperature controller 101 and a current controller 102, the laser emitter 11 includes a laser diode 111 and a heat sink 112, the photoelectric detection 13 includes a photosensitive sensor 131 and a gain controller 132, the signal The demodulation section 14 includes a DDS 141 and a harmonic demodulator 142 . in:
[0057] The temperature controller 101 in the laser controller 10 is used to control the laser emitter 11 to work in a...
Embodiment 2
[0077] refer to Figure 8 , the present embodiment provides a method for suppressing the noise of the gas concentration detection signal in the glass, using the above-mentioned device to suppress the noise of the gas concentration detection signal in the glass bottle, including: overall technical noise suppression step B801, signal conditioning and filtering step B802 and signal The optimization processing step B803 includes the following steps:
[0078] In step U801, wavelength modulation is performed on the laser emission signal.
[0079] Specifically, the synthesized current signal i 0 (t) driving laser emitter 11 emission intensity is 1 0 (t) Laser emission.
[0080] Specifically, where the intensity is I 0 The emission laser expression of (t) is:
[0081] I 0 (t)=I' 0 (t)[1+αsin(ωt)] (1)
[0082] Among them, I' 0 (t) represents the change of the output light intensity (I' 0 (t) is the change value within one cycle), α represents the light intensity modulation co...
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