• DocumentCode
    2721661
  • Title

    A simulation environment for robot motion planning

  • Author

    Ettlin, A. ; Büchler, P. ; Bleuler, H.

  • Author_Institution
    Univ. of Appl. Sci. of Central Switzerland, Horw, Switzerland
  • fYear
    2005
  • fDate
    23-25 June 2005
  • Firstpage
    277
  • Lastpage
    282
  • Abstract
    We introduce Ibex, a real-time capable physics simulation framework. Ibex is ideally suited to simulate mechatronic systems as well as environments in which robot motion planning algorithms can be developed and tested. The entire control loop encountered in robotics can be simulated. This includes the simulation of robot sensors and actuators. The current implementation includes a rigid-body simulation which encompasses not only kinematic but also dynamics effects. It performs collision detection and resolution in real-time or faster for typical setups. The completely modular design of Ibex means the framework is easily configurable and extensible. Additional physics simulation modules covering phenomena such as electromagnetic forces can be integrated transparently. These modules can interact with existing entities to build an overall system. Ibex can communicate with external hardware through I/O interfaces, thus allowing hardware-in-the-loop simulations. We present example Ibex applications from both industrial and mobile robotics. We also describe why Ibex is a real asset for robot motion planning and how we intend to apply it in this field.
  • Keywords
    actuators; collision avoidance; digital simulation; industrial robots; mechatronics; mobile robots; physics computing; real-time systems; robot dynamics; robot kinematics; sensors; I/O interfaces; Ibex; collision detection; collision resolution; control loop; electromagnetic forces; hardware-in-the-loop simulation; mechatronic system simulation; physics simulation; real-time system; rigid-body simulation; robot actuators; robot dynamics; robot kinematics; robot motion planning; robot sensors; robotics; Actuators; Electromagnetic forces; Hardware; Kinematics; Mechatronics; Motion planning; Physics; Robot motion; Robot sensing systems; System testing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Robot Motion and Control, 2005. RoMoCo '05. Proceedings of the Fifth International Workshop on
  • Print_ISBN
    83-7143-266-6
  • Type

    conf

  • DOI
    10.1109/ROMOCO.2005.201436
  • Filename
    1554415