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High sensitivity fiber optic angular displacement sensor and its application for detection of ultrasound

机译:高灵敏度光纤角位移传感器及其在超声检测中的应用

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摘要

In this paper, we report on the development of an intensity-modulated fiber-optic sensor for angular displacement measurement. This sensor was designed to present high sensitivity, linear response, and wide bandwidth and, furthermore, to be simple and low cost. The sensor comprises two optical fibers, a positive lens, a reflective surface, an optical source, and a photodetector. A mathematical model was developed to determine and simulate the static characteristic curve of the sensor and to compare different sensor configurations regarding the core radii of the optical fibers. The simulation results showed that the sensor configurations tested are highly sensitive to small angle variation (in the range of microradians) with nonlinearity less than or equal to 1percent. The normalized sensitivity ranges from (0.25 X V_(max)) to (2.40 X V_(max)) mV/(mu)rad (where V_(max) is the peak voltage of the static characteristic curve), and the linear range is from 194 to 1840 (mu)rad. The unnormalized sensitivity for a reflective surface with reflectivity of 100percent was measured as 7.7 mV/(mu)rad. The simulations were compared with experimental results to validate the mathematical model and to define the most suitable configuration for ultrasonic detection. The sensor was tested on the characterization of a piezoelectric transducer and as part of a laser ultrasonics setup. The velocities of the longitudinal, shear, and surface waves were measured on aluminum samples as 6.43, 3.17, and 2.96 mm/(mu)s, respectively, with an error smaller than 1.3percent. The sensor, an alternative to piezoelectric or interferometric detectors, proved to be suitable for detection of ultrasonic waves and to perform time-of-flight measurements and nondestructive inspection.
机译:在本文中,我们报告了用于角位移测量的强度调制光纤传感器的发展。该传感器被设计为具有高灵敏度,线性响应和宽带宽,而且设计简单,成本低。该传感器包括两根光纤,一个正透镜,一个反射面,一个光源和一个光电探测器。开发了一个数学模型来确定和模拟传感器的静态特性曲线,并就光纤的芯半径比较不同的传感器配置。仿真结果表明,所测试的传感器配置对小角度变化(在微弧度范围内)高度敏感,并且非线性度小于或等于1%。归一化灵敏度范围为(0.25 X V_(max))至(2.40 X V_(max))mV /μrad(其中V_(max)是静态特性曲线的峰值电压),线性范围为194至1840(rad)拉德。反射率为100%的反射表面的非归一化灵敏度为7.7 mV /μrad。仿真结果与实验结果进行了比较,以验证数学模型并定义最适合超声检测的配置。对传感器进行了压电换能器特性测试,并将其作为激光超声设置的一部分进行了测试。在铝样品上测得的纵向波,剪切波和表面波的速度分别为6.43、3.17和2.96 mm /μs,误差小于1.3%。该传感器是压电或干涉式检测器的替代产品,被证明适用于超声波的检测以及飞行时间的测量和无损检测。

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