High stability optical fiber sensing device for eliminating light intensity disturbance and demodulation method thereof
A fiber-optic sensing, high-stability technology, used in measuring devices, instruments, measuring ultrasonic/sonic/infrasonic waves, etc., can solve problems such as distortion of demodulation results, achieve simple structure, reduce operating costs, and eliminate unstable light sources. Effect
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Embodiment 1
[0034] Such as figure 1As shown, a fiber optic sensing device with high stability that eliminates light intensity disturbances, the sensing device includes: a broadband light source 1, an isolator 2, an optical fiber sensing array 3, a photodetector array 4, and a data acquisition card 5 and a microcomputer 6; the broadband light source is connected to the optical fiber sensing array through an isolator, and the optical signal output by the optical fiber sensing array is detected by the photodetector array, and then the output signal of the photodetector array is converted from analog to digital by the data acquisition card , and then the microcomputer uses the demodulation algorithm to perform data processing on the output signal.
[0035] The composition mode of described optical fiber sensing array is as follows figure 2 As shown: the a port of the 2×2 coupler C0 is connected to the isolator as the input end of the optical fiber sensing array, and the d port of the 2×2 co...
Embodiment 2
[0041] The specific structure of this embodiment is the same as that of Embodiment 1, wherein the light source is a broadband light source, and the power is selected as 150mw. The carrier frequency generated by the signal generator is selected as 10000Hz, the signal sampling frequency in the demodulation circuit is selected as 500KHz, the signal to be tested is selected as a sine wave with an amplitude of 1 and a frequency of 700Hz, the frequency of the reference signal is 2000Hz, and a light intensity of 50Hz is introduced disturbance. according to Figure 6 It can be concluded that the traditional demodulation algorithm demodulates distortion, and the algorithm of the present invention can demodulate the signal to be tested correctly.
Embodiment 3
[0043] The specific structure of this embodiment is the same as that of Embodiment 1, wherein the light source is a broadband light source, and the power is selected as 150mw. The carrier frequency generated by the signal generator is selected as 10000Hz, the signal sampling frequency in the demodulation circuit is selected as 500KHz, the signal to be tested is selected as a sine wave with an amplitude of 1 and a frequency of 700Hz, the frequency of the reference signal is 2000Hz, and a light intensity of 100Hz is introduced disturbance. according to Figure 7 It can be concluded that the traditional demodulation algorithm demodulates distortion, and the algorithm of the present invention can demodulate the signal to be tested correctly.
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Abstract
Description
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Application Information
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