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The theoretical and experimental study on white light interferometric fiber optic sensors network based on Michelson and Mach-Zehnder interferometers

机译:基于Michelson和Mach-Zehnder干涉仪的白光干涉光纤传感器网络的理论与实验研究

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Based on the white light interferometric technology, a novel combination interferometer of Mach-Zehnder and Michelson system has been proposed and demonstrated. It consists of a Michelson interferometer and a series Mach-Zehnder interferometers which are linked to an arm of the Michelson interferometer, thus configuring a multi fiber optic sensors measuring network. It can be used to measure the distribution of strain or temperature, and it is especially suitable to monitor large-scale structural deformation, because its sensing gauge length is up to ten meters. Meanwhile, it could be used in temperature compensation mode with one arm of the Mach-Zehnder interferometer measuring the strain caused by the variation of deformation or temperature while another arm only measure the ambient temperature because it is in strain free state. Thus, this sensor arm could be used to compensate the variation of the refractive index of the fiber induced by temperature changes and the elongation of the fiber caused by thermal expansion.
机译:基于白光干涉技术,提出并证明了Mach-Zehnder和Michelson系统的新型组合干涉仪。它由迈克尔逊干涉仪和串联Mach-Zehnder干涉仪组成,它们与迈克森干涉仪的臂连接,从而配置了多光纤传感器测量网络。它可用于测量应变或温度的分布,特别适用于监测大规模的结构变形,因为其感测量长度高达10米。同时,它可以在温度补偿模式下使用Mach-Zehnder干涉仪的一个臂,测量由变形或温度变化引起的应变,而另一个臂仅测量环境温度,因为它处于应变状态。因此,该传感器臂可用于补偿由温度变化引起的纤维屈光折射率的变化和由热膨胀引起的纤维的伸长率。

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