• 제목/요약/키워드: fiber-optic current sensor

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광섬유 센서를 이용한 온도 및 변형 모니터링에 대한 현장응용 사례 (Case Studies on Distributed Temperature and Strain Sensing(DTSS) by using an Optical fiber)

  • 김중열;김유성;이성욱;민경주;박동수;방기성;김강식
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2006년도 춘계 학술발표회 논문집
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    • pp.86-95
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    • 2006
  • Brillouin backscatter is a type of reflection that occurs when light is shone into an optical fibre. Brillouin reflections are very sensitive to changes in the fibre arising from external effects, such as temperature, strain and pressure. We report here several case studies on the measurement of strain using Brillouin reflections. A mechanical bending test of an I beam, deployed with both fiber optic sensors and conventional strain gauge rosettes, was performed with the aim of evaluating: (1) the capability and technical limit of the DTSS technology for strain profile sensing; (2) the reliability of strain measurement using fiber optic sensor. The average values of strains obtained from both DTSS and strain gauges (corresponding to the deflection of I beam) showed a linear relationship and an excellent one-to-one match. A practical application of DTSS technology as an early warning system for land sliding or subsidence was examined through a field test at a hillside. Extremely strong, lightweight, rugged, survivable tight-buffered cables, designed for optimal strain transfer to the fibre, were used and clamped on the subsurface at a depth of about 50cm. It was proved that DTSS measurements could detect the exact position and the progress of strain changes induced by land sliding and subsidence. We also carried out the first ever distributed dynamic strain measurement (10Hz) on the Korean Train eXpress(KTX) railway track in Daejeon, Korea. The aim was to analyse the integrity of a section of track that had recently been repaired. The Sensornet DTSS was used to monitor this 85m section of track while a KTX train passed over. In the repaired section the strain increases to levels of 90 microstrain, whereas in the section of regular track the strain is in the region of 30-50 microstrain. The results were excellent since they demonstrate that the DTSS is able to measure small, dynamic changes in strain in rails during normal operating conditions. The current 10km range of the DTSS creates a potential to monitor the integrity of large lengths of track, and especially higher risk sections such as bridges, repaired track and areas at risk of subsidence.

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다이오드 레이저를 이용한 광흡수 농도 계측 기법 (I) (Species Concentration Measurement Using Diode Laser Absorption Spectroscopy (I))

  • 안재현;김용모;김세원
    • 한국연소학회지
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    • 제9권3호
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    • pp.27-35
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    • 2004
  • Diode laser absorption sensors are advantageous because they may provide fast, sensitive, absolute, and selective measurements of species concentration. These systems are very attractive for practical applications owing to its compactness, resonable cost, robustness, and ease of use. In addition, diode lasers are fiber-optic compatible and thus enable simultaneous measurements of multiple species along a line-of-sight. Recent advances of room-temperature, near-IR and visible diode laser sources for telecommunication, optical data storage applications make it possible to be applied for combustion diagnostics based on diode laser absorption spectroscopy. Therefore, combined with fiber-optics and high sensitive detection strategies, compact and portable sensor systems are now appearing for variety of applications. The objectives of this research are to develope a new gas sensing system and to verify feasibility of this system. Wavelength and power characteristics as a function of injection current and temperature are experimentally found out. Direct absorption spectroscopy has been demonstrated in these experiments and has a bright prospect to this diode laser system.

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사분파장 위상 간섭계 폴리머 광집적회로 기반 광전류센서의 온도 안정성 향상 연구 (Improvement of Thermal Stability of Optical Current Sensors Based on Polymeric Optical Integrated Circuits for Quadrature Phase Interferometry)

  • 천권욱;김성문;박태현;이은수;오민철
    • 한국광학회지
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    • 제30권6호
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    • pp.249-254
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    • 2019
  • 광섬유가 지니는 패러데이 효과를 이용하여 전류의 세기를 측정하는 광전류 센서 소자를 설계 및 제작하였다. 센서 소자의 동작 안정성을 향상시키기 위하여 편광회전 반사 간섭계와 사분 파장 위상 간섭계 구조를 도입하였다. 이 복잡한 구조를 구성하는 다양한 광소자들은 하나의 폴리머 광집적회로로 구성하여 작은 크기로 제작되었다. 본 구조를 이용하면 외부에서 별도의 바이어스 피드백 제어가 필요 없는 상태에서 전류를 측정하는 센싱 동작을 수행할 수 있다. 또한 온도변화나 외부진동으로 인한 광센서 특성 변화를 제거하여 안정적인 특성을 유지하는 광전류센서를 구현할 수 있다. 그러나 패러데이 효과를 결정짓는 베르데상수는 온도에 따라 미소한 값의 변화를 가지고 있다. 본 연구에서는 이 변화로 인한 광전류센서의 온도의존성을 극복하기 위한 연구를 수행하였다. 편광회전 반사 간섭계의 부품인 광섬유 사분 파장판의 길이를 최적값으로부터 벗어나는 상태로 맞추어 줌으로써 베르데 상수의 온도의존성에 의해 나타나는 광전류센서의 스케일 팩터 변화를 보상해줄 수 있었다. 온도변화를 보상한 광전류센서는 주변 온도를 상온에서 85℃로 올리는 동안, 센서 측정 신호의 온도 의존성이 0.2% 이내로 유지되는 것을 확인했다.