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Balancing of a Planar Bouncing Object

Conference Paper Object Manipulation Artificial Intelligence ยท Robotics

Abstract

While most previous work in planning manipulation tasks relies on the assumption of quasi-static conditions, there can be situations where the quasi-static assumption may not hold, and the assumptions about the environment must be relaxed. This is true, for example, in a situation where objects are making and breaking contact at high enough velocities that contact dynamics play a significant effect in the motion of the colliding objects. There has been some work studying model of collision, in particular, for the design and analysis of systems with intermittent constraints, and for the design of juggling robots. Our work extends previous studies in planar juggling to the case of a polygonal object, using the model of rigid body impulsive collision. Simulations verify the results of a linearized analysis. >

Authors

Keywords

  • Robots
  • Motion analysis
  • Analytical models
  • Acceleration
  • Friction
  • Predictive models
  • Computer science
  • Strategic planning
  • Force control
  • Pressure control
  • Center Of Mass
  • Eigenvectors
  • Fixed Point
  • Linear System
  • Linear Approximation
  • Equilibrium Point
  • Point-like
  • Velocity Vector
  • Complex Conjugate
  • Radians
  • Pressure Distribution
  • Object-oriented
  • Normal Component
  • Object Motion
  • Tangential Components
  • Dynamic Contact
  • Tangential Velocity
  • Eigenvalues Of System

Context

Venue
IEEE International Conference on Robotics and Automation
Archive span
1984-2025
Indexed papers
30179
Paper id
550257596445004250
v2026.09.13