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ICRA 1998

Improving Visually Servoed Disassembly Operations by Automatic Camera Placement

Conference Paper Hand-Eye Coordination Artificial Intelligence · Robotics

Abstract

It is advantageous to use an independently mobile camera in visually servoed disassembly operations since its degrees of freedom can be used to bring the camera into an optimal view-pose. Apart from the vision-based closed-loop control that guides the disassembly robot, a second vision-based closed-loop control can be set up which upgrades the camera from a passive to an active sensor and optimizes the view-pose according to changes in the scene domain. The objective of this contribution is to present an approach to model-based pose initialization and pose refinement steps of an active camera which is able to simultaneously observe and track several objects moving to some extent independently from each other. In both steps, constraints regarding object occlusions, the limited field-of-view, and the uncertainty of pose estimation are exploited to determine an optimal camera pose. The feasibility of this approach to model-based pose initialization is experimentally validated and documented for the case of the manipulation of a shock absorber lid.

Authors

Keywords

  • Cameras
  • Robot vision systems
  • Mobile robots
  • Focusing
  • Layout
  • Dynamic range
  • Uncertainty
  • Apertures
  • Robot sensing systems
  • Electric shock
  • Disassembly Operations
  • Uncertainty Estimation
  • Pose Estimation
  • Refinement Step
  • Camera Pose
  • Kinematic
  • Ellipsoid
  • Unit Vector
  • Singular Value
  • Bounding Box
  • Imaging Evaluation
  • Optical Axis
  • Subsequent Evaluation
  • Object Motion
  • Linear Inequalities
  • High Dynamic Range
  • Scalar Value
  • Largest Singular Value
  • Object Velocity
  • Boundary Representation

Context

Venue
IEEE International Conference on Robotics and Automation
Archive span
1984-2025
Indexed papers
30179
Paper id
452362282025100163
v2026.09.13