首页> 外文会议>Conference on Sensors and Smart Structures Technologies for Civil, Mechanical, and Aerospace Systems; 20060227-0302; San Diego,CA(US) >The Feasibility Analysis of Monitoring Falling Stones by Means of a Fiber Optic Interferometer
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The Feasibility Analysis of Monitoring Falling Stones by Means of a Fiber Optic Interferometer

机译:光纤干涉仪监测落石的可行性分析

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There are many areas in Taiwan which does not have solid rocks. Suffering from the debris flow induced by the earthquakes and many flood disasters in recent years, the geology even shows the flimsiness. It is very frequent to find lots of falling stones on the highway; sometimes disasters take place. Because the optical fiber has the features of low loss and wide bandwidth; it has replaced the coaxial cable as the mainstream of the communication system in recent years. Because of its high sensitivity characteristic, the interferometer is usually applied to long distance, weak signal detection. In general, if the vibration is located at far away places, the weak signal makes it uneasy to monitor. The configuration of our sensing system is made of an interferometer and fiber Bragg Gratings. A demodulation circuit was used as the signal processor to measure the phase difference caused by vibration. Compare to that of a traditional accelerometer, the fiber optic sensor is more easier to implement in field applications. The later is an all fiber system with good accuracy for low frequency vibration measurement. According to our preliminary test, the dynamic range of the system is 45 dB and the noise level is 7.3 x 10~(-3) rad. Hence, the object of this paper is to study the feasibility of a monitoring system, which is compatible with the existed optical fiber communication and a high sensitivity interferometer as a falling stone monitoring system.
机译:台湾许多地区没有坚硬的岩石。近年来,由于地震和许多洪水灾害引起的泥石流,该地质甚至显示出脆弱性。在高速公路上经常发现很多掉落的石头。有时会发生灾难。由于光纤具有损耗低,带宽大的特点。近年来,它已取代同轴电缆成为通信系统的主流。由于其高灵敏度特性,干涉仪通常用于长距离,弱信号检测。通常,如果振动位于较远的地方,则信号较弱,因此难以监视。我们的传感系统的配置由干涉仪和光纤布拉格光栅组成。解调电路用作信号处理器,以测量由振动引起的相位差。与传统的加速度计相比,光纤传感器在现场应用中更易于实现。后者是用于低频振动测量的高精度的全光纤系统。根据我们的初步测试,系统的动态范围为45 dB,噪声级别为7.3 x 10〜(-3)rad。因此,本文的目的是研究一种监视系统的可行性,该监视系统与现有的光纤通信和作为落石监视系统的高灵敏度干涉仪兼容。

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