Phase Optical Time Domain Reflectometry and Optical Fiber Double Pulse Differential Perturbation Detector
An optical time domain reflectometer and double-pulse technology, applied in instruments, measuring devices, using wave/particle radiation, etc., can solve the problems of detection sensitivity and spatial resolution, increase stability, and system instability, etc., to eliminate The effect of light source frequency instability or frequency drift, improved detection sensitivity, and high spatial resolution
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Embodiment 1
[0018] The continuous laser light output from the ECL laser 1 is input to the input port of the first coupler 2, and the input continuous laser light is divided into four by the first coupler 2. The first pump light output from the first output port 2- 1 is input to the first input port of the second coupler 11, and the second pump light 2-2 output from the second output port of the first coupler 2 is input to the third coupler 13, and these two paths will be used as coherent detection Local oscillator light, the third pump light 2-3 output by the third output port of the first coupler 2 is input to the input port of the first polarization controller 3, and the fourth pump light output by the fourth output port of the first coupler 2 The pump light 2-4 is input to the input port of the second polarization controller 4, and these two paths will be used as the detection light path, and the third pump light 2-3 enters the first acousto-optic modulator 5 after passing through the f...
Embodiment 2
[0020] Based on phase optical time domain reflectometer and optical fiber double pulse differential perturbation detector, including ECL laser 1, first coupler 2, first polarization controller 3, second polarization controller 4, first acousto-optic modulator 5, Second acousto-optic modulator 6, signal generator 7, first circulator 8, symmetrical surface core optical fiber 9 to be tested, second circulator 10, second coupler 11, first balance detector 12, third coupler 13. A second balance detector 14, a differential circuit 15, a low-pass filter 16, a high-frequency data acquisition card 17, and a computer 18;
[0021] ECL laser 1 outputs continuous laser light and is connected to the input end of the first coupler 2, and the first output port of the first coupler 2 is connected to the first input port of the second coupler 11, and the second output port of the first coupler 2 is connected to the first input port of the second coupler 2. The first input port of the third coup...
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