Double-digital closed-loop optical fiber magnetometer for implementing working point control and magnetic zeroing feedback

A digital closed-loop, working point technology, applied in the field of weak magnetic measurement, can solve the problems of large reflection noise, complex structure, low sensitivity, etc., and achieve the effect of reducing reflection noise, simple structure and high sensitivity

Inactive Publication Date: 2009-08-12
BEIHANG UNIV
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Problems solved by technology

[0009] The introduction of the Faraday rotating mirror FRM into the optical path eliminates the phenomenon of polarization fading, but at the same time, a large reflection noise is introduced into the optical path. Two optical isolators ISO are required to be added to the input and output ends of the light wave to eliminate it. The

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  • Double-digital closed-loop optical fiber magnetometer for implementing working point control and magnetic zeroing feedback
  • Double-digital closed-loop optical fiber magnetometer for implementing working point control and magnetic zeroing feedback
  • Double-digital closed-loop optical fiber magnetometer for implementing working point control and magnetic zeroing feedback

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specific Embodiment

[0048] Specific examples, such as figure 2 Shown:

[0049] Including light source drive circuit, sensing optical unit, preamplifier filter unit, photoelectric conversion unit, A / D conversion unit, digital signal processing unit, modulation signal generation unit, D / A conversion unit, solenoid drive unit, etc. in:

[0050] The sensing optical unit mainly includes a DFB (distributed feedback) laser, a three-port optical circulator, an integrated optical phase modulator (Y waveguide), and a magnetostrictive transducer.

[0051] The specific sensing mechanism is: under the control of the light source driving circuit, the light wave emitted by the DFB laser enters the first port 1 of the optical circulator, and the light from the second port 2 of the optical circulator passes through the integrated optical phase modulator ( Y waveguide), the polarizing function of the Y waveguide is changed to linearly polarized light, and then it is divided into two, and enters the two arms of ...

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Abstract

The invention discloses an even-number closed loop optical fiber magnetometer for achieving working point control and magnetism return-to-zero, which comprises a light source drive circuit, a light path sensing unit, a photoelectric conversion unit, an A/D conversion unit, a digital signal processing unit, a D/A conversion unit and the like, wherein the light path sensing unit comprises a DFB laser, a three-port optical circulator, an integrated optical phase modulator and the like, and has simple structure; the digital signal processing unit various control time sequences, low-frequency modulation square wave and a synchronous clock of a high-frequency sine modulation signal, completes relative demodulation of low-frequency phase drift and generates compensation phase shift digital quantity, secondarily demodulates a signal subjected to relative demodulation of the low-frequency phase drift to generate the magnetic field signal feedback quantity, forms the even-number closed loop detection, achieves the stable control and magnetism return-to-zero feedback of an interferometer orthogonal working point, improves the anti-jamming capability and the stability of the system, expands the dynamic range of measuring, and improves the sensitivity for measuring the magnetism.

Description

technical field [0001] The invention relates to a magnetic field weakening measurement technology, in particular to a dual-digital closed-loop optical fiber magnetometer which realizes operating point control and magnetic return to zero feedback. Background technique [0002] With the development of science and technology and society, the application of weak magnetic measurement technology in the fields of national defense construction, national economy and biomedicine is becoming more and more extensive. [0003] In the military field, with the development of submarine noise reduction technology in various countries, traditional sonar submarine detection can no longer meet the needs of modern anti-submarine warfare, and various non-acoustic submarine detection technologies have become research hotspots in various countries. Magnetic anomaly detection is considered to be the most reliable means to classify targets and improve the resolution of submarine attacks. At present, ...

Claims

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Application Information

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IPC IPC(8): G01R33/032
Inventor 张春熹冯秀娟王夏霄李传生张朝阳于佳
Owner BEIHANG UNIV
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