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Shape Sensing Monitoring System Based on Fiber-Optic Strain Measurements: Laboratory Tests

机译:基于光纤应变测量的形状传感监测系统:实验室测试

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In the context of the characterization of the shape of flying sails whilst racing, a novel method for real-time formfinding of flexural beams based on strain measurements has been developed and implemented. The very large displacements and deformations occurred on the beam pose specific demands both to the algorithm for shape detection and to the materials and sensors to use in the practical implementation, which are described and addressed in this paper. The developed method is implemented by installation of fiber Bragg grating (FBG) sensors on a beam, which are used to evaluate the curvature at specific cross- sections. The deformation curve is reconstructed by integration of local curvatures and interpolation. The effectiveness of the developed method is verified by tests on a physical model. An image-based monitoring system is further employed to validate the concept and the tests conducted with the FBG sensors. This allows the performance of an additional series of sensitivity tests in order to define the most relevant measurement parameters and characterize the accuracy of the developed method.
机译:在赛车时,在飞行帆形状的表征的背景下,已经开发并实施了一种基于应变测量的弯曲梁的实时形成的新方法。在该纸张中,光束上发生的非常大的位移和变形对形状检测算法和用于材料和传感器的算法,在本文中描述和解决。开发方法通过在光束上安装光纤布拉格光栅(FBG)传感器来实现,用于评估特定横截面的曲率。通过集成局部曲率和插值来重建变形曲线。通过对物理模型的测试来验证开发方法的有效性。进一步采用基于图像的监控系统来验证与FBG传感器进行的概念和测试。这允许执行另外一系列的灵敏度测试,以便定义最相关的测量参数并表征开发方法的准确性。

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