Design of Position Estimator for Rope Driven Micromanipulator of Surgical Robot Based on Parameter Autonomous Selection Model

Author:

Wang Wenjie1,Wang Jie1,Chen Congcong1,Luo Yang1,Wang Xiaohua1,Yu Lingtao2

Affiliation:

1. Xi’an Polytechnic University Shaanxi Artificial Intelligence Joint Laboratory, School of Electronics and Information, , Xi’an 710048 , China

2. Harbin Engineering University College of Mechanical and Electrical Engineering, , Harbin 15001 , China

Abstract

AbstractAs the micromanipulator of surgical robots works in a narrow space, it is difficult to install any position sensors at the end, so the position control and position detection cannot be accurately performed. A position estimator based on the parameter autonomous selection model is proposed to estimate the end position indirectly. First, a single joint principle prototype and a position estimator model are established through the 4DOF driving scheme of the micromanipulator and the cable-driven model. Second, the proposed parameter change model is combined with the parameter selection method to form a parameter autonomous selection model. Finally, a position estimator based on the parameter autonomous selection model is established. The experimental results show the maximum estimation error of the position estimator is 0.1928 deg. Compared with other position estimation methods, the position estimator proposed in this paper has higher accuracy and better robustness, which lays a foundation for the full closed-loop control of micromanipulator position.

Funder

National Natural Science Foundation of China

Publisher

ASME International

Subject

Mechanical Engineering

Reference35 articles.

1. Past, Present and Future of Surgical Robotics;Mayor;Trends Urol. Men’s Health,2022

2. Dual-Arm Robotic Needle Insertion With Active Tissue Deformation for Autonomous Suturing;Zhong;IEEE Rob. Autom. Lett.,2019

3. Vision-Based and Marker-Less Surgical Tool Detection and Tracking: A Review of the Literature;Bouget;Med. Image Anal.,2017

4. Task Control With Remote Center of Motion Constraint for Minimally Invasive Robotic Surgery;Aghakhani,2013

5. Linear Parameter Variant Modeling and Parameter Identification of a Cable-Driven Micromanipulator for Surgical Robot;Wang;Proc. Inst. Mech. Eng., Part C: J. Mech. Eng. Sci.,2019

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