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Strain sensor based on a pair of single-mode-multimode-single-mode fiber structures in a ratiometric power measurement scheme

机译:基于一对单模-多模-单模光纤结构的比例传感器,采用比例功率测量方案

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摘要

The strain and temperature dependencies of a step-index single-mode-multimode-single-mode (SMS) fiber structure are investigated numerically and experimentally. For intensity-based strain measurement using a single SMS fiber structure, at a selected wavelength, it is found that there is a high strain dependence, but also a temperature dependence that will induce strain measurement error. To minimize the temperature-induced strain measurement error, two SMS fiber structures are proposed and demonstrated in a ratiometric power measurement scheme; one SMS structure acts as the strain sensor, and the other SMS structure acts as the temperature monitor. The extracted temperature information is used to determine a strain value based on a suitable calibration of strain responses with temperature variations. It is demonstrated that for strain measurement from 0 to 1000 (mu)(epsilon) within the temperature range from 10 deg C to 40 deg C, the proposed configuration can provide a strain and temperature resolution of 0.34 (mu)(epsilon) and 0.14 deg C, respectively, with a temperature-induced strain measurement error as low as 0.39(mu)(epsilon).
机译:数值和实验研究了阶跃折射率单模多模单模(SMS)光纤结构的应变和温度依赖性。对于在单个波长下使用单个SMS纤维结构的基于强度的应变测量,发现存在较高的应变相关性,而且还存在温度相关性,这会引起应变测量误差。为了最小化温度引起的应变测量误差,提出了两种SMS纤维结构,并在比例功率测量方案中进行了演示。一个SMS结构充当应变传感器,另一个SMS结构充当温度监控器。所提取的温度信息用于基于具有温度变化的应变响应的适当校准来确定应变值。结果表明,对于在10摄氏度至40摄氏度的温度范围内从0到1000με的应变测量,所提出的配置可以提供0.34με和0.14的应变和温度分辨率℃,温度引起的应变测量误差分别低至0.39μs(ε)。

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