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ICRA 2011

Mobile manipulation: Encoding motion planning options using task motion multigraphs

Conference Paper Manipulation Planning III Artificial Intelligence ยท Robotics

Abstract

This paper introduces the concept of a task motion multigraph, a data structure that can be used to reveal a difficulty specific to mobile manipulation: the possibility of planning in different state spaces in order to achieve the same goal. The different options reflect the mobile manipulator's ability to use different hardware components to perform a required task. For instance, a humanoid robot can open a door with its left arm or with its right arm. Thus, motion planning can be performed in the left arm's state space or in the right arm's state space. Given the specification of a task, it is shown how to encode the available motion planning options in a task motion multigraph. An algorithm that computes sequences of motion plans for mobile manipulators using the newly introduced notion is presented and evaluated. The algorithm makes use of information from the task motion multigraph to prioritize the spaces for which motion plans are computed. Experimental results show that reduced planning times can be obtained when considering the available planning options.

Authors

Keywords

  • Planning
  • Mobile communication
  • Manipulators
  • Joints
  • Grasping
  • Collision avoidance
  • Path Planning
  • Multigraph
  • Mobile Manipulator
  • Plan Options
  • State Space
  • Humanoid Robot
  • Multiple Ways
  • Sequence Of Actions
  • Robotic System
  • Nodes In The Graph
  • Object Motion
  • Cup Of Coffee
  • Starting State
  • Inverse Kinematics
  • Task Planning
  • Hierarchical Representation
  • Transition Path
  • Motion Sequences
  • Transfer Path
  • Joint Set
  • Dimension Of The State Space

Context

Venue
IEEE International Conference on Robotics and Automation
Archive span
1984-2025
Indexed papers
30179
Paper id
87818926575978736
v2026.09.13