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Detecting hydrosonic signal using a polarization technique

Detecting hydrosonic signal using a polarization technique
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摘要 Some optical fiber hydrophones, such as PGC Mach-Zehnder Interferometer, have a birefringence of single mode optical fibers which induce signal fading. Especially, if two optical beams from the optical arms are orthogonal, the interferomic signal can’t be detected at all. Here a new method is introduced. This is to translate the detected phase difference into a linearly polarized angle, then detect it, so that polarization inducing signal fading will be avoided. In theory, this problem is solved. Furthermore, the effect on measurement results from optical source fluctuation becomes little when using the polarization technique. Some optical fiber hydrophones, such as PGC Mach-Zehnder Interferometer, have a birefringence of single mode optical fibers which induce signal fading. Especially, if two optical beams from the optical arms are orthogonal, the interferomic signal can’t be detected at all. Here a new method is introduced. This is to translate the detected phase difference into a linearly polarized angle, then detect it, so that polarization inducing signal fading will be avoided. In theory, this problem is solved. Furthermore, the effect on measurement results from optical source fluctuation becomes little when using the polarization technique.
出处 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2004年第3期305-308,共4页 哈尔滨工业大学学报(英文版)
关键词 水声信号 信号检测 极化 光纤水听器 干扰 polarization interference hydrophone measurement
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参考文献2

  • 1GULYAEV A.Deep-water fiber-optic hydrophone[].Quantum Electronics.1990
  • 2BUCKMAN A.General sensitivity enhancement and commonmode compensation principle for interferometer fiber-optic sensors[].Journal of Lightwave Technology.1990

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