• DocumentCode
    663973
  • Title

    ReMod3D: A high-performance simulator for autonomous, self-reconfigurable robots

  • Author

    Collins, Thomas ; Ranasinghe, Nadeesha Oliver ; Wei-Min Shen

  • Author_Institution
    Inf. Sci. Inst., Univ. of Southern California, Los Angeles, CA, USA
  • fYear
    2013
  • fDate
    3-7 Nov. 2013
  • Firstpage
    4281
  • Lastpage
    4287
  • Abstract
    Three-dimensional, physics-based simulators are important to the field of self-reconfigurable robotics because they allow researchers to approximate the physical interactions and autonomous behaviors of large numbers of modules in a low-cost, safe, and highly-controlled manner. This paper presents a novel, high-performance, general-purpose simulator for autonomous, self-reconfigurable robots called ReMod3D (RM3D) that overcomes the speed and scalability limitations of existing self-reconfigurable simulators while, at the same time, allowing for realistic module structures, complex environments, and high physical simulation fidelity. While most existing self-reconfigurable simulators view modules as actuated physical bodies with programmable controllers, RM3D views them as embodied agents, defined not only by their physical bodies (links, joints, docks, sensors, actuators) but also by their minds (actions, percepts, behaviors, world models) and the noise inherent in the interaction between sensors, actuators, and the environment. RM3D also simulates inter-module dock connection breakage, something novel for self-reconfigurable robot simulators. Additionally, we present experimental evidence showing that this novel architecture makes RM3D well-suited to locomotion, manipulation, reconfiguration, and embodied intelligence research.
  • Keywords
    digital simulation; programmable controllers; self-adjusting systems; telerobotics; ReMod3D; autonomous robots; complex environments; embodied agents; high physical simulation fidelity; high-performance simulator; intermodule dock connection breakage; physics-based simulators; programmable controllers; realistic module structures; self-reconfigurable robot simulators; self-reconfigurable robots; three-dimensional simulators; Actuators; Engines; Joints; Physics; Robots; Scalability; Sensors;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Intelligent Robots and Systems (IROS), 2013 IEEE/RSJ International Conference on
  • Conference_Location
    Tokyo
  • ISSN
    2153-0858
  • Type

    conf

  • DOI
    10.1109/IROS.2013.6696970
  • Filename
    6696970