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Wookho Son

Possible papers associated with this exact author name in Arrow. This page groups case-insensitive exact name matches and is not a full identity disambiguation profile.

2 papers
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2

ICRA Conference 2001 Conference Paper

Hybrid Dynamic Simulation of Rigid-Body Contact with Coulomb Friction

  • Wookho Son
  • Jeffrey C. Trinkle
  • Nancy M. Amato

This paper introduces a hybrid scheme for simulating rigid bodies in contact. We use an adaptive strategy for handling two different contact situations, 'bouncing' and 'steady'. To handle contact for rigid bodies, we use two impulse-based methods to explicitly or implicitly compute impulses due to collision impact. These two methods are used so that different impulse methods are applied adaptively depending on the contact situations. Our experiments show that our simple adaptive simulation scheme enables efficient and physically-correct dynamic simulation involving rigid-body contacts with Coulomb friction. This adaptive scheme was incorporated into our dynamic simulator, called I-GMS, which supports various types of simulations. We demonstrate the simulation results of our scheme using a ball falling on a flat surface in three dimensions.

IROS Conference 2000 Conference Paper

Interactive dynamic simulation using haptic interaction

  • Wookho Son
  • Kyunghwan Kim
  • Nancy M. Amato
  • Jeffrey C. Trinkle

Describes an interactive dynamic simulator for virtual environments which allows user interaction via a haptic interface. The interactive simulation is performed in our testbed dynamic simulator I-GMS (Interactive Generalized Motion Simulator), which has been developed in an object-oriented framework for simulating motions of free bodies and complex linkages such as those needed for robotic systems or human body simulation. User interaction is achieved by performing push and pull operations via the PHANToM haptic device which runs as on integrated part of I-GMS. We demonstrate the user interaction capability of I-GMS through online editing of trajectories for a 6-DOF robot manipulator.

v2026.09.13