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Measurement uncertainty of multicore optical fiber sensors used to sense curvature and bending direction

机译:用于感测曲率和弯曲方向的多核光纤传感器的测量不确定性

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摘要

This paper describes a study of the influence of strain measurement uncertainty on sensing curvature and bending direction, considering one of the most widely used fiber geometries for sensing applications (7-core Multicore Fiber) with different core spacings (distance between outer cores and fiber axis). The Monte Carlo method was proposed to simulate the real measurement process and 33 simulations with 106 iterations were performed to determine the laws of propagation of strain measurement uncertainty in calculating curvature and bending direction. The outcomes, which show the strong influence of strain uncertainty and core spacing on the precision of Multicore Fiber sensors, can be used to support the design of new sensors or new fiber geometry and to predict their achievable performance. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文介绍了应变测量不确定度对传感曲率和弯曲方向的影响的研究,考虑到具有不同核心间距的应用(7芯多芯光纤)的最广泛使用的纤维几何形状之一(外芯和纤维轴之间的距离) )。 建议蒙特卡罗方法模拟实际测量过程,并进行33种具有106次迭代的模拟,以确定应变测量不确定性的传播规律,以计算曲率和弯曲方向。 结果,表明应变不确定度和核心间距对多芯光纤传感器精度的强烈影响,可用于支持新传感器或新纤维几何形状的设计,并预测其可实现的性能。 (c)2018年elestvier有限公司保留所有权利。

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