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A Combined Planning Method Based on Biarc Curve and Bezier Curve for Concentric Cable-Driven Manipulators Working in Confined Environments

delete2022-12-01
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PRE
AI
Z
Zonggao Mu *
Y
Yongquan Chen
Z
Zheng Li *
C
Chengjiang Wang
丁宁 cover
丁宁 (Ning Ding)
H
Huihuan Qian
DOI:10.1109/TMECH.2022.3157382delete
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Abstract

Abstract

En 中文
The concentric cable-driven manipulator is becoming increasingly important in minimally invasive surgery. Obviously, one of the basic requirements is to track trajectory and avoid collision at the same time. However, the unavoidable difficulty is to choose an inverse kinematics solution that fits inside the confined environment from infinitely many solutions due to its redundancy. This article proposes a combined planning method based on biarc curve and Bezier curve for the concentric cable-driven manipulator tracking desired trajectory in confined 2-D and 3-D. First, the new proposed structure and the nomenclature are introduced. Then, the kinematic modeling of the concentric cable-driven manipulator in actuator space, configuration space, and task space is detailed. Thereafter, using the proposed biarc curve, the relationship between the end direction and bending angles is comprehensively analyzed. The Bezier curve is then adopted to plan the desired path for the concentric cable-driven manipulator moving in confined 2-D and 3-D environments. Finally, the proposed combined planning method based on biarc curve and Bezier curve is experimentally verified in a trajectory tracking task simulating a large intestine examination in both the typical C configuration (2-D environment) and the S configuration (3-D environment). The results prove that the combined planning method based on biarc curve and Bezier curve can be applied to generate a reasonable solution for concentric cable-driven manipulators that are confined both 2-D and 3-D environments.
Keywords:
Manipulators
path planning
robot kinematics
robot motion

Journal

I
IEEE-ASME Transactions on Mechatronics
IF:
7.3
Papers:
5.4K
Citations:
2.4W

Organization

T
The Chinese University of Hong Kong, Shenzhen
Scholars:
4.2K
Papers: 3.9K
Citations: 7
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