An Interactive Virtual Reality System for On-Orbit Servicing

被引:0
|
作者
Sagardia, Mikel
Hertkorn, Katharina
Hulin, Thomas
Wolff, Robin
Hummel, Johannes
Dodiya, Janki
Gerndt, Andreas
机构
关键词
D O I
暂无
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
The growth of space debris is becoming a serious problem. There is an urgent need for mitigation measures based on maintenance, repair and de-orbiting technologies. Our video presents a virtual reality framework in which robotic maintenance tasks of satellites can be simulated interactively. The two key components of this framework are a realistic virtual reality simulation and an immersive interaction device. The peculiarity of the virtual reality simulation is the combination of a physics engine based on Bullet with an extremely efficient haptic rendering algorithm inspired by an enhanced version of the Voxmap-Pointshell Algorithm. A central logic module controls all states and objects in the virtual world. To enable the human operator an optimal immersion into the virtual environment, the DLR bimanual haptic device is used as interaction device. Equipped with two light-weight robot arms, this device is able to provide realistic haptic feedback at both human hands, while covering the major part of human operator's workspace. The applicability of this system is enhanced by additional force sensors, active hand interfaces with an additional degree of freedom, smart safety technologies and intuitive robot data augmentation. Our plat-form can be used for verification or training purposes of robotic systems interacting in space environments.
引用
收藏
页数:1
相关论文
共 50 条
  • [31] Spacecraft modular architecture design for on-orbit servicing
    Reynerson, CM
    2000 IEEE AEROSPACE CONFERENCE PROCEEDINGS, VOL 4, 2000, : 227 - 237
  • [32] Ground Verification of the Feasibility of Telepresent On-Orbit Servicing
    Stoll, Enrico
    Walter, Ulrich
    Artigas, Jordi
    Preusche, Carsten
    Kremer, Philipp
    Hirzinger, Gerd
    Letschnik, Juergen
    Pongrac, Helena
    JOURNAL OF FIELD ROBOTICS, 2009, 26 (03) : 287 - 307
  • [33] When will on-orbit servicing be part of the space enterprise?
    Hastings, Daniel E.
    Putbrese, Benjamin L.
    La Tour, Paul A.
    ACTA ASTRONAUTICA, 2016, 127 : 655 - 666
  • [34] Applications and Development of Space Tether in On-Orbit Servicing
    Meng Z.-J.
    Huang P.-F.
    Lu Y.-B.
    Hu Y.-X.
    Yuhang Xuebao/Journal of Astronautics, 2019, 40 (10): : 1134 - 1145
  • [35] OPTIMAL INTERSATELLITE TRANSFERS FOR ON-ORBIT SERVICING MISSIONS
    FALLIN, EH
    JOURNAL OF SPACECRAFT AND ROCKETS, 1975, 12 (09) : 565 - 568
  • [36] Research on mission assignment of on-orbit servicing spacecraft
    Liang, Yangang
    Wang, Weilin
    Guofang Keji Daxue Xuebao/Journal of National University of Defense Technology, 2013, 35 (05): : 26 - 30
  • [37] Soft Robots for On-Orbit Servicing (OOS) Missions
    Gao, Xiaoqian
    Hyla, Bartosz
    Uhl, Tadeusz
    MECHATRONICS-INDUSTRY INSPIRED ADVANCES, 2023, 2024, 1042 : 139 - 151
  • [38] DLR's robotics technologies for on-orbit servicing
    Hirzinger, G
    Landzettel, K
    Brunner, B
    Fischer, M
    Preusche, C
    Reintsema, D
    Albu-Schäffer, A
    Schreiber, G
    Steinmetz, BM
    ADVANCED ROBOTICS, 2004, 18 (02) : 139 - 174
  • [39] A review of space robotics technologies for on-orbit servicing
    Flores-Abad, Angel
    Ma, Ou
    Pham, Khanh
    Ulrich, Steve
    PROGRESS IN AEROSPACE SCIENCES, 2014, 68 : 1 - 26
  • [40] A modular architecture for an interactive real-time simulation and training environment for satellite on-orbit servicing
    Wolff, Robin
    Preusche, Carsten
    Gerndt, Andreas
    JOURNAL OF SIMULATION, 2014, 8 (01) : 50 - 63