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Seawater temperature measuring method and seawater temperature measuring system

A temperature measurement and seawater technology, which is applied in the field of seawater temperature measurement method and system, can solve the problems of long scanning time of F-P scanning interferometer and high cost of edge detection technology, and achieve the effect of simple measurement, good real-time performance and low cost

Active Publication Date: 2017-10-24
EZHOU INST OF IND TECH HUAZHONG UNIV OF SCI & TECH +1
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Problems solved by technology

[0003] In the application of ocean temperature remote sensing, the Brillouin scattering spectroscopy measurement technology adopted by the Brillouin scattering-based lidar system mainly falls into the following two categories: edge detection technology and F-P Fabry-Pérot scanning interferometer technology, among them, the cost of edge detection technology is higher, and the scanning time of F-P scanning interferometer is longer, both of these technologies are limited in practical application

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  • Seawater temperature measuring method and seawater temperature measuring system
  • Seawater temperature measuring method and seawater temperature measuring system

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Embodiment Construction

[0041] The invention is based on the laser heterodyne technology. The pulsed laser beam is divided into the detection light and the local oscillator light after being split by the beam splitter. After the scattered light is received by the telescope, it is introduced into the balance detector and mixed with the local oscillator light. Based on the optical heterodyne detection method, that is, using the principle of optical coherent superposition, the local oscillator light with different frequencies and the backward Rayleigh Brillouin scattered light are superimposed, and the backward Rayleigh Brillouin scattered light as a high-frequency light wave signal is converted It is an intermediate frequency envelope signal, and the differential signal after mixing enters the low noise amplifier for electrical amplification to ensure the dynamic range of the differential signal, and then the acquisition card performs analog-to-digital AD sampling and sends it to the computer for subseq...

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Abstract

The invention discloses a seawater temperature measuring method and a seawater temperature measuring system, and relates to the sea temperature remote sensing technology field. The seawater temperature measuring method comprises steps that laser is divided into coherent local oscillator light and probe light, and the probe light is focused in a water area at a specific depth; backward Rayleigh Brillouin scattering light is received from the water area at a specific depth; the frequency mixing of the backward Rayleigh Brillouin scattering light and the local oscillator light is carried out, and after photoelectric conversion, an intermediate frequency signal is output; Brillouin frequency shift is extracted from the intermediate frequency signal, and according to a seawater temperature inversion model, the temperature of the seawater at the specific depth is acquired. The Brillouin frequency shift and underwater vertical temperature distribution are acquired in a fast and high-precision way, and therefore costs are low, measurement is convenient, real-time performance is good, and anti-noise performance is good.

Description

technical field [0001] The invention relates to the technical field of ocean temperature remote sensing, in particular to a seawater temperature measurement method and system. Background technique [0002] Brillouin scattering is an inelastic scattering in which photons interact with a medium. When Brillouin scattering occurs, a photon will annex a phonon to increase its own energy through collision, or lose its own energy to generate a phonon. The exchange of acousto-optic energy generated by this collision will cause a change in the frequency of the scattered light. In the frequency spectrum, this light frequency change is reflected in the fact that the Brillouin scattering peaks are divided into Stokes peaks and anti-Stokes peaks, and their positions are symmetrically distributed on both sides of the laser center frequency, and relative to the laser center There is a certain shift in frequency. This shift is named the Brillouin shift. The spectral distribution of Brill...

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Application Information

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IPC IPC(8): G01J5/00
CPCG01J5/0037
Inventor 梁琨周波
Owner EZHOU INST OF IND TECH HUAZHONG UNIV OF SCI & TECH