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IROS 2025

Numerical Optimization-based Kinematics with Pose Tracking Control for Continuum Robots

Conference Paper Accepted Paper Artificial Intelligence · Robotics

Abstract

In this paper, we employ multiple IMUs into a triple-section continuum manipulator to precisely capture the attitude data of each section’s end disk. Leveraging the sensory and mechanical hardware system, we construct a sophisticated coordinate transformation scheme to accurately identify the detailed configuration states of the manipulator. Additionally, we introduce a numerical optimization strategy to develop a unified forward and inverse kinematic modeling framework, ensuring both iterative efficiency and accuracy. Through the IMUs’ real-time attitude feedback, we implement a closed-loop controller, enhancing the manipulator’s operational robustness and agility. In our experimental evaluations, we assess the convergence performance of both forward and inverse kinematics within a simulated environment and validate the precision of these kinematic models through real-time experiments on an actual continuum manipulator. Moreover, we evaluate the performance of the proposed controller by examining its accuracy during the manipulator’s continuous motions and analyzing its response characteristics. In contrast to previous research on continuum robots in the literature, we pioneer a fully integrated kinematic control architecture that is successfully implemented on a physical continuum robotic system.

Authors

Keywords

  • Accuracy
  • Trajectory tracking
  • Kinematics
  • Manipulators
  • Real-time systems
  • Trajectory
  • Numerical models
  • Continuum robots
  • Optimization
  • Convergence
  • Pose Tracking
  • Simulation Environment
  • Agility
  • Robotic System
  • Closed-loop Control
  • Numerical Optimization
  • Inverse Kinematics
  • Kinematic Control
  • Error Rate
  • Simulation Model
  • Step Size
  • Angular Velocity
  • Workspace
  • Gain Control
  • Position Error
  • Position Vector
  • Drop Rate
  • Vertical Plane
  • Configuration Space
  • Euler Angles
  • Current Pose
  • Error Matrix
  • Rotation Vector
  • Constant Curvature
  • Motion Velocity
  • Yaw Angle
  • Tendon Length
  • control

Context

Venue
IEEE/RSJ International Conference on Intelligent Robots and Systems
Archive span
1988-2025
Indexed papers
26578
Paper id
657701830901413818
v2026.09.13