用于可操纵手术机器人SMA弯曲模块的大挠度FBG弯曲传感器

Jun Sheng, N. Deaton, J. Desai
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引用次数: 7

摘要

本文介绍了一种用于形状记忆合金(SMA)弯曲模块的光纤布拉格光栅(FBG)弯曲传感器。由于外形尺寸小,成本低,挠度大,SMA弯曲模块可用于构建一次性手术机器人,用于各种微创手术。为了实现SMA弯曲模组的闭环控制,必须采用内禀弯曲传感器。由于缺乏用于SMA弯曲模块的弯曲传感器,我们通过使用柔性粘合剂将FBG纤维与超弹性基板集成开发了FBG弯曲传感器。由于基材是超薄的,粘合剂是柔性的,因此传感器具有低刚度,可以测量大曲率。此外,由于传感器/执行器组件的正交排列,可以补偿SMA驱动引起的温度变化的影响。对所研制传感器的工作原理进行了建模,并进行了仿真。在实验评估了所开发的模型后,将传感器与SMA弯曲模块集成,并进行循环双向偏转。实验结果表明,该传感器测量精度较高,重复性好,测量曲率大,但由于摩擦存在滞后。
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A Large-Deflection FBG Bending Sensor for SMA Bending Modules for Steerable Surgical Robots
This paper presents the development of a fiber Bragg grating (FBG) bending sensor for shape memory alloy (SMA) bending modules. Due to the small form factor, low cost, and large-deflection capability, SMA bending modules can be used to construct disposable surgical robots for a variety of minimally invasive procedures. To realize a closed-loop control of SMA bending modules, an intrinsic bending sensor is imperative. Due to the lack of bending sensors for SMA bending modules, we have developed an FBG bending sensor by integrating FBG fibers with a superelastic substrate using flexible adhesive. Since the substrate is ultra-thin and adhesive is flexible, the sensor has low stiffness and can measure large curvatures. Additionally, due to the orthogonal arrangement of the sensor/actuator assembly, the influence of temperature variation caused by SMA actuation can be compensated. The working principle of the developed sensor was modeled followed by simulations. After experimentally evaluating the developed model, the sensor was integrated with an SMA bending module and cyclically bi-directionally deflected. The experimental results proved the relatively high measurement accuracy, high repeatability, and large measurable curvatures of the sensor, although hysteresis was observed due to friction.
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