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Microsystem optical fiber gas sensor, sensing system and sensing method

A gas sensor and micro-system technology, which is applied in the fields of instruments, scientific instruments, color/spectral characteristic measurement, etc., and can solve the problems of complex system structure, high requirements for sensing environment and difficulties, etc.

Inactive Publication Date: 2006-06-28
重庆工学院
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Problems solved by technology

However, there are still many problems in the contact combustion gas sensor: poor resistance to high-concentration impact and poor stability; the sensor needs to be adjusted frequently, once every 2 weeks; The service life is short, usually only 1 year; the sensor detects gas by catalytic combustion on the sensing surface, and gas is a flammable and explosive gas, which itself is a serious accident induction source; the sensor has a long reaction time to gas, about 30 seconds, difficult to detect and control in time
Its disadvantages are: (1) the sensor has a large volume, complex structure, and distributed detection is difficult; (2) it has high requirements for the sensing environment, and coal dust is easy to adhere to the two concave mirrors, resulting in failure of the optical reflection surface; (3) ) The concave mirror surface is on the inner wall of the gas chamber, and it is difficult to clean the coal dust on the mirror surface; (4) The relative positions of multiple parts in the sensor must be precisely aligned, and its vibration resistance is poor, and assembly is difficult
However, there are still some shortcomings in this optical fiber evanescent wave gas sensor: (1) The fabrication of the sensor is cumbersome and difficult, and the optical fiber cladding needs to be removed by chemical corrosion or abrasion, and the removal position of the optical fiber cladding is difficult to precisely control
At the same time, the surface of the fiber core after chemical corrosion or abrasion of the fiber cladding is a rough non-optical interface, which affects the optical performance at the interface, and the noise of the signal light is very large, which affects the measurement accuracy
(2) The sensing system uses a single optical path intensity measurement method. The fluctuation and interference of the light source, optical path and circuit system have a great impact on the reliability and accuracy of the sensing system, and it is difficult to achieve higher precision biomolecular measurement and measurement. analyze
(3) The system structure is relatively complex, and its detectors generally use photomultiplier tubes, which require high-voltage partial pressure systems and cooling systems

Method used

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  • Microsystem optical fiber gas sensor, sensing system and sensing method
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Embodiment Construction

[0031] Further illustrate the present invention below in conjunction with accompanying drawing:

[0032] see figure 2 , The structure of the sensor includes: fiber coating 1, fiber cladding 2, fiber core 3, short period fiber grating 4, long period fiber grating LPFG15, long period fiber grating LPFG26, short period fiber grating 7, protective cover 8 , dust filter thin layer 9, curing glue 10, transitional buffer sleeve 11. Among them, the optical fiber material is quartz, and two long-period fiber gratings with a length of about 20 mm are arranged on a section of optical fiber that has removed the plastic protective coating; the two long-period fiber gratings are 10 cm apart, and their coupling center wavelengths are both 1160 nm. Its 3dB bandwidth is 10nm, its coupling efficiency at the central wavelength is 99.7%, and its wavelength bandwidth at which the coupling efficiency is greater than 99% is 3.5nm; there are two short-period optical fibers outside the two long-peri...

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Abstract

A micro system optical fiber gas transducer is formed by two short - cycle optical fiber gratings and two long - cycle optical fiber gratings on one section of optical fiber. The sensing system formed by said gas transducers consists of wideband light source, wideband coupler, microsysem optical fiber gas transducer, optical fiber spectrum demodulator and computer. The sensing method calibrates temperature coefficient and sensitive coefficient of transducer first and then measures out concentration of gas to be tested.

Description

technical field [0001] The invention belongs to the technical fields of optical fiber sensing, gas chemistry and safety, and in particular relates to a microsystem optical fiber gas sensor, a sensing system and a sensing method. Background technique [0002] In terms of mining safety, for a long time, major and super-large coal mine accidents around the world have occurred frequently, and the number of casualties has reached hundreds of people. Every major accident brings huge property losses, especially irreparable losses to the lives of industrial workers, posing a threat to both families and society. One of the main causes of coal mine accidents is explosions caused by high concentrations of gas, which occur frequently all over the world. 40% of my country's coal mines are high gas and outburst mines, which have serious safety problems. At present, the effective monitoring and control of gas is still a worldwide problem, and people have invested a lot of manpower and fi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N21/35G01N21/41G06F19/00G01N21/3504G01N21/359
Inventor 曾祥楷彭东林
Owner 重庆工学院
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