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Intensity-referenced and temperature-independent curvature-sensing concept based on chirped fiber Bragg gratings

机译:基于chi光纤布拉格光栅的强度参考且温度独立的曲率传感概念

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摘要

An intensity-referenced temperature-independent curvature-measurement technique that uses a smart composite that comprises two chirped fiber Bragg gratings is demonstrated. The two gratings are embedded on opposite sides of the composite laminate and act simultaneously as curvature sensors and as wavelength discriminators, enabling a temperature-independent intensity-based scheme to measure radius of curvature. Also, the system's performance is independent of arbitrary power losses that are induced in the lead fibers to the sensing head. It is demonstrated that the measurement range depends on the relative positions of the chirped fiber Bragg gratings and on their spectral bandwidths. By using two chirped fiber Bragg gratings with bandwidths W-1 = 2.8 nm and W-2 = 3.7 nm and with central wavelengths at lambda(01) = 1560.3 nm and lambda(02) - 1563.7 nm, we obtained a resolution of 1.6 mm/(1)Hz for the measurement of the radius of curvature (similar to R = 350 mm) over the measurement range 190 mm < R < infinity. (c) 2005 Optical Society of America.
机译:演示了强度参考的温度无关曲率测量技术,该技术使用了包含两个chi光纤布拉格光栅的智能复合材料。这两个光栅嵌入复合层压板的相对两侧,并同时充当曲率传感器和波长识别器,从而实现了基于温度的基于强度的方案来测量曲率半径。而且,系统的性能与引向传感头的引线纤维中引起的任意功率损耗无关。结果表明,测量范围取决于the光纤布拉格光栅的相对位置及其光谱带宽。通过使用带宽为W-1 = 2.8 nm和W-2 = 3.7 nm且中心波长为lambda(01)= 1560.3 nm和lambda(02)-1563.7 nm的两个chi光纤布拉格光栅,我们获得了1.6 mm的分辨率/(1)Hz,用于在190 mm

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