首页> 外国专利> Apparatus for interrogating distributed optical fibre sensors using a stimulated brillouin scattering optical frequency-domain interferometer

Apparatus for interrogating distributed optical fibre sensors using a stimulated brillouin scattering optical frequency-domain interferometer

机译:使用受激布里渊散射光频域干涉仪询问分布式光纤传感器的设备

摘要

Apparatus for measuring the distribution of strain and temperature along an optical fibre (34) by analysing the distribution of the Rayleigh scattering and stimulated Brillouin scattering wavelength shifts along the length of a sensing fibre (34) using a Wavelength-Scanning Optical Frequency-Domain Analysis (WS-BOFDA) technique in which a wavelength-swept laser (12) sources a Brillouin “pump” radiation and excites a Brillouin ring laser (14) that sources a Brillouin “stimulus” radiation with wavelength shifted with respect to the excitation of a tuneable quantity. One optical Mach Zehnder or Michelson interferometer (27) is excited by the “stimulus” radiation on both the measurement arm, that comprises the sensing fibre (34), and the reference arm (38) while the “pump” radiation is injected only in the measurement arm by a controllable inhibition system (57). The output of the interferometer (27) is analysed in the frequency domain differential detectors (73, 74) sweeping the wavelength of the pump laser (12) and of the wavelength shift of the Brillouin laser (14). The invented apparatus does not require electro-optical modulators, phase-locking, high power optical amplifiers or microwave electronics and overcomes the prior art issues on manufacturing cost, stability, spatial resolution and on separate measurement of strain and temperature on the same sensor.
机译:通过分析沿感应光纤( 34 <的长度)的瑞利散射和受激布里渊散射的波长位移的分布来测量沿光纤( 34 )的应变和温度分布的设备/ B>)使用波长扫描光频域分析(WS-BOFDA)技术,其中波长扫描激光器( 12 )发出布里渊的“泵浦”辐射并激发布里渊环形激光器( 14 )发出的布里渊“刺激”辐射的波长相对于可调量的激发发生了偏移。一种光学马赫曾德尔或迈克尔逊干涉仪( 27 )被测量臂上的“刺激”辐射激发,该测量臂包括传感光纤( 34 )和参考臂( 38 ),而“泵浦”辐射仅通过可控的抑制系统( 57 )注入到测量臂中。干涉仪的输出( 27 )在频域差分检测器( 73、74 )中进行扫描,扫描泵浦激光器的波长( 12 >)和布里渊激光器的波长偏移( 14 )。本发明的设备不需要电光调制器,锁相,高功率光放大器或微波电子设备,并且克服了在制造成本,稳定性,空间分辨率以及在同一传感器上单独测量应变和温度方面的现有技术问题。

著录项

  • 公开/公告号US9823098B2

    专利类型

  • 公开/公告日2017-11-21

    原文格式PDF

  • 申请/专利权人 FILIPPO BASTIANINI;

    申请/专利号US201515128434

  • 发明设计人 FILIPPO BASTIANINI;

    申请日2015-04-23

  • 分类号G01D5/353;G01B9/02;G01N21/63;H01S3/30;H01S3/105;

  • 国家 US

  • 入库时间 2022-08-21 12:55:44

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