Fujiwara Eric, Cabral Thiago Destri
Appl Opt. 2022 Aug 10;61(23):6787-6794. doi: 10.1364/AO.464503.
We present a multi-point curvature sensor based on optical fiber specklegram measurements. Apart from the current approaches, the proposed system uses an ordinary multimode fiber excited with visible light as a reflection-type probe. Besides, this method discretizes the waveguide into segments connected by joints and assumes sequential bend events, simplifying the specklegram referencing for correlation analyses and avoiding laborious deep learning processing. Sensor characterization yielded a linear response with ∼1.3 resolution for single curvatures, whereas shape prediction experiments in the plane resulted in maximum errors of ∼3.5 and ∼5.4 for angular and linear positioning, respectively. Furthermore, exploratory tests indicated errors <2.3 regarding probe curvatures in the space. This research introduces a feasible, straightforward alternative to the available shape sensors, enabling applications in medical probes and soft robotics.
我们提出了一种基于光纤散斑图测量的多点曲率传感器。与当前方法不同,所提出的系统使用由可见光激发的普通多模光纤作为反射型探头。此外,该方法将波导离散为通过接头连接的段,并假设连续的弯曲事件,简化了用于相关分析的散斑图参考,避免了费力的深度学习处理。传感器表征显示单曲率具有约1.3分辨率的线性响应,而平面内的形状预测实验在角度和线性定位方面的最大误差分别约为3.5和5.4。此外,探索性测试表明在空间中探头曲率的误差<2.3。本研究为现有的形状传感器引入了一种可行、直接的替代方案,可应用于医疗探头和软机器人领域。