首页> 外文会议>Conference on Smart Structures and Materials 2002: Smart Sensor Technology and Measurement Systems, Mar 18-19, 2002, San Diego, USA >Development of multipoint strain measurement systems using small-diameter fiber Bragg gratings
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Development of multipoint strain measurement systems using small-diameter fiber Bragg gratings

机译:使用小直径光纤布拉格光栅开发多点应变测量系统

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We have been studying optical sensing technologies using fiber Bragg gratings (FBGs) for health-monitoring systems in the fields of constructions, civil engineering, aerospace and so on. In these fields, various kinds of sensing techniques such as strain, temperature, vibration and crack detection are required. To meet these needs, we have fabricated FBGs with precise photo-induced refractive index modulation or the grating period along a fiber. Also, as embedded sensors, we have developed small-diameter FBGs which can be embedded in fiber reinforced plastics (FRP) composite materials without inducing any mechanical deterioration. In this paper, first we present the progress of our small-diameter FBGs for various sensing applications. Next, we propose a new wavelength detection technique for FBG sensors using a wavelength division multiplexing (WDM) coupler. The reflected light is divided in the ratio depending wavelength through the WDM coupler. Especially, we adopted a PLC-type WDM coupler which has the advantage in low polarization sensitivity and integration compared with a fused-optical fiber-type WDM coupler. This technique is useful in high-speed detection for vibration or impact damage. Another application is a multipoint measurement system by using together with optical time domain reflectometry (OTDR) method. In this system, pulses of light incident into an optical fiber return from the FBGs to a detector with different arrival time. As a result, we can use FBGs with the same Bragg wavelength, because measuring delay time of the pulses enables to distinguish each FBG location. In addition, using together with wavelength division multiplexing within wavelength region for optical communications can increase the number of FBG sensors. The experimental results of the performance in this system showed that it is very promising for multipoint strain measuring systems.
机译:我们一直在研究在建筑,土木工程,航空航天等领域中使用光纤布拉格光栅(FBG)的健康监测系统的光学传感技术。在这些领域中,需要各种传感技术,例如应变,温度,振动和裂纹检测。为了满足这些需求,我们制造了具有精确的光致折射率调制或沿着光纤的光栅周期的FBG。另外,作为嵌入式传感器,我们开发了小直径FBG,可以将其嵌入纤维增强塑料(FRP)复合材料中,而不会引起任何机械性能下降。在本文中,首先我们介绍了用于各种传感应用的小直径FBG的进展。接下来,我们为使用波分复用(WDM)耦合器的FBG传感器提出了一种新的波长检测技术。反射的光通过WDM耦合器按波长划分比例。特别是,我们采用了PLC型WDM耦合器,与熔融光纤WDM耦合器相比,其偏振灵敏度低且集成度低。此技术可用于高速检测振动或冲击损坏。另一个应用是与光时域反射仪(OTDR)方法一起使用的多点测量系统。在该系统中,入射到光纤中的光脉冲从FBG返回到具有不同到达时间的检测器。结果,我们可以使用具有相同布拉格波长的FBG,因为测量脉冲的延迟时间可以区分每个FBG位置。另外,与波长区域内的波分复用一起用于光通信可以增加FBG传感器的数量。该系统性能的实验结果表明,它对多点应变测量系统非常有前途。

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