形状记忆合金*
机器人末端执行器
机器人
形状记忆合金
前馈
运动学
成像体模
模块化设计
计算机科学
机械臂
工程类
控制理论(社会学)
人工智能
物理
控制工程
操作系统
控制(管理)
光学
算法
经典力学
作者
Shicong Shao,Botian Sun,Qingpeng Ding,Wanquan Yan,Wenjia Zheng,Kim Yan,Yilun Hong,Shing Shin Cheng
标识
DOI:10.1109/lra.2020.2967297
摘要
The letter presents a compact shape memory alloy (SMA)-actuated magnetic resonance (MR)-conditional neurosurgical robotic system. It consists of a 2-degree of freedom (DoF) cable-driven steerable end effector, an antagonistic SMA springs-based actuation module, and a quick-connect module, packaged into a single integrated device measuring 305 mm length × 76 mm diameter. The system is also highly adaptable, such that it could operate a cable-driven end effector up to a maximum of 4-DoFs and its length can be easily modified due to the acrylic plate-based modular construction. In addition to the kinematics of the robotic end effector and the SMA constitutive model, we also present the antagonistic SMA springs model under the known tension and cable displacement from the robotic end effector. We performed extensive characterization experiments to obtain SMA model parameters and integrated a feedforward component inour controller to achieve improved tracking of a sinusoidal reference up to 80° bending angle amplitude and 100 s period. Lastly, proof-of-concept robot demonstrations were performed in a gel phantom and in the MRI that confirmed the robot motion capability in the brain and MRI compatibility of the robot.
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