Coding technique for improving detection performance of distributed fiber sensor and application thereof

A technology of distributed optical fiber and coding technology, which is applied in the direction of measurement and instrumentation by using optical devices to transmit sensing components, by measuring the changing force of optical properties of materials when they are stressed, and can solve the detection performance (signal-to-noise ratio is not high). , detection of weak signal, high signal-to-noise ratio and other problems, to achieve the effect of wide application value, reduction of transmission times, detection sensitivity and signal-to-noise ratio improvement

Inactive Publication Date: 2010-10-06
SOUTHWEST JIAOTONG UNIV
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Problems solved by technology

[0003] Several key technical problems in the distributed optical fiber sensing system include: (1) The measurement accuracy and spatial resolution of the system generally have a mutual restrictive relationship; (2) The detection signal is generally weak, so the signal processing system is required to have a high (3) Since a large numbe

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  • Coding technique for improving detection performance of distributed fiber sensor and application thereof
  • Coding technique for improving detection performance of distributed fiber sensor and application thereof
  • Coding technique for improving detection performance of distributed fiber sensor and application thereof

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Embodiment Construction

[0018] The present invention will be further described below in conjunction with the accompanying drawings.

[0019] figure 1 A schematic diagram showing distributed self-published Rieouin scattering (B-OTDR) optical sensing technology. Optical pulses (modulated pump lasers with electrical signals of a certain pulse width) are injected into one end of the transmission fiber, and the backscattered light in the fiber is used as It is a function of time, and at the same time has information about the stress or temperature distribution along the fiber, and the Brillouin frequency shift has a good linear relationship with the change of the fiber strain or temperature, so it can be obtained by measuring the Brillouin scattering frequency shift. strain and temperature distribution.

[0020] Considering that the fiber optic sensor based on the self-published Liouin effect has a simple structure and is convenient for practical engineering applications, but the signal detection is more...

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Abstract

The invention discloses a coding technique for improving the detection performance of a distributed fiber sensor and an application thereof. A coding matrix has the following characteristics: (1) the quadratic sum of all elements of the inverse matrix of the coding matrix is minimal; (2) the elements of the coding matrix comprise a plurality of unit levels of N, N-1, N-2,...0, wherein the N is not less than 2; and (3) relation between the order number N*N of the coding matrix and the pulse length L of pump light is N=2(L-1). Compared with the distributed fiber sensing equipment without adopting coding or with adopting an original coding mode, the invention greatly improves the detection sensitivity and the signal-to-noise ratio, can shorten the coding length, reduce the sending times of the coded pump light and obtain higher coding gain. The invention can be applied to different distributed fiber sensors, can highly and sensitively monitor parameters such as temperature or pressure and the like, and has wide application value in the fields of petrochemical industry, aerospace, geological engineering, geotechnical engineering, traffic, power and the like.

Description

technical field [0001] The present invention relates to an optical sensor, especially in the field of distributed optical fiber sensing utilizing a novel encoding technique to improve detection performance. Background technique [0002] Compared with conventional sensing technology, optical fiber sensing has many excellent properties such as anti-electromagnetic interference and atomic radiation, light weight, small size, insulation, high temperature resistance, corrosion resistance, etc., and is more and more favored by special occasions or harsh environment applications . Distributed optical fiber sensing technology was developed in the late 1970s with the emergence of Optical Time Domain Reflectometry (OTDR), which is still widely used in optical fiber engineering. In the last ten years or so, a series of new distributed optical fiber sensing mechanisms and measurement systems have emerged, which have the ability to simultaneously obtain the measured distribution informa...

Claims

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Application Information

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IPC IPC(8): G01D5/36G01B11/16G01K11/32G01L1/24G01K11/3206G01K11/322G01K11/324
Inventor 闫连山潘炜罗斌张志勇蒋志远
Owner SOUTHWEST JIAOTONG UNIV
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