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Apodization Optimization of FBG Strain Sensor for Quasi-Distributed Sensing Measurement Applications

机译:用于准分布式传感测量应用的FBG应变传感器的停顿优化

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摘要

A novel optimized apodization of Fiber Bragg Grating Sensor (FBGS) for quasi-distributed strain sensing applications is developed and introduced in this paper. The main objective of the proposed optimization is to obtain a reflectivity level higher than 90% and a side lobe level around −40 dB, which is suitable for use in quasi-distributed strain sensing application. For this purpose, different design parameters as apodization profile, grating length, and refractive index have been investigated to enhance and optimize the FBGS design. The performance of the proposed apodization has then been compared in terms of reflectivity, side lobe level (SLL), and full width at half maximum (FWHM) with apodization profiles proposed by other authors. The optimized sensor is integrated on quasi-distributed sensing system of 8 sensors demonstrating high reliability. Wide strain sensitivity range for each channel has also been achieved in the quasi-distributed system. Results prove the efficiency of the proposed optimization which can be further implemented for any quasi-distributed sensing application.
机译:本文开发并介绍了用于准分布式应变感应应用的纤维布拉格光栅传感器(FBGS)的新颖优化的抛光。所提出的优化的主要目的是获得高于90%的反射率水平和约40dB的侧瓣级,其适用于准分布式应变感测应用。为此目的,已经研究了不同的设计参数,作为停留曲线,光栅长度和折射率,以增强和优化FBGS设计。然后在反射率,侧瓣水平(SLL)和半最大(FWHM)的完全宽度下进行了所提出的沉积的性能,其具有其他作者提出的沉积曲线。优化的传感器集成在8个传感器的准分布式传感系统上,该系统展示了高可靠性。在准分布式系统中也已经实现了每个通道的宽应变灵敏度范围。结果证明了所提出的优化的效率,该优化可以进一步实现任何准分布式传感应用。

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