Leveraging Enhanced Virtual Reality Methods and Environments for Efficient, Intuitive, and Immersive Teleoperation of Robots

被引:16
作者
De Pace, Francesco [1 ]
Gorjup, Gal [2 ]
Bai, Huidong [3 ]
Sanna, Andrea [1 ]
Liarokapis, Minas [2 ]
Billinghurst, Mark [3 ]
机构
[1] Politechn Torino, Turin, Italy
[2] Univ Auckland, New Dexter Res Grp, Auckland, New Zealand
[3] Auckland Bioengn Inst, Auckland, New Zealand
来源
2021 IEEE INTERNATIONAL CONFERENCE ON ROBOTICS AND AUTOMATION (ICRA 2021) | 2021年
关键词
SYSTEM;
D O I
10.1109/ICRA48506.2021.9560757
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Many studies have focused on Virtual Reality (VR) frameworks for remotely controlling robotic systems. Although VR systems have been used to teleoperate robots in simple scenarios, their effectiveness in terms of accuracy, speed, and usability has not been rigorously evaluated for complex tasks that require accurate trajectories. In this work, an Enhanced Virtual Reality (EVR) framework for robotic teleoperation is evaluated to assess if it can be efficiently used in complex tasks that require accurate control of the robotic end-effector. The environment and the employed robot are captured using RGB-D cameras, while the remote user controls the motion of the robot with VR controllers. The captured data are transmitted and reconstructed in 3D so as to allow the remote user to monitor the task execution progress in real time, using a VR headset. The EVR system is compared with two other interface alternatives: i) teleoperation in pure VR (the model of the robot is rendered with respect to its real joint states), and ii) teleoperation in EVRR (the model of the robot is superimposed on the real robot). The results show that pure point cloud interfaces suffer from visualization issues, reducing the effectiveness of the robot teleoperation. However, the accuracy and user experience can be greatly improved by including the robot model.
引用
收藏
页码:12967 / 12973
页数:7
相关论文
共 33 条
[1]   Robonaut: NASA's space humanoid [J].
Ambrose, RO ;
Aldridge, H ;
Askew, RS ;
Burridge, RR ;
Bluethmann, W ;
Diftler, M ;
Lovchik, C ;
Magruder, D ;
Rehnmark, F .
IEEE INTELLIGENT SYSTEMS & THEIR APPLICATIONS, 2000, 15 (04) :57-62
[2]  
[Anonymous], 2019, VIRTUAL REALITY
[3]   A User Study on Mixed Reality Remote Collaboration with Eye Gaze and Hand Gesture Sharing [J].
Bai, Huidong ;
Sasikumar, Prasanth ;
Yang, Jing ;
Billinghurst, Mark .
PROCEEDINGS OF THE 2020 CHI CONFERENCE ON HUMAN FACTORS IN COMPUTING SYSTEMS (CHI'20), 2020,
[4]  
Bass HF, 2018, EVOL AM PRESID, P1, DOI 10.1007/978-3-319-62175-3_1
[5]  
Bischoff M., 2019, ROS#
[6]  
Brooke J, 1996, Usability Evaluation in Industry, P189, DOI DOI 10.1201/9781498710411-35/SUS-QUICK-DIRTY-USABILITY-SCALE-JOHN-BROOKE
[7]  
Cao Chao, 2019, The 24th International Conference on 3D Web Technology, Web3D'19, page, P1
[8]  
De Pace F., 2020, 26 ACM S VIRTUAL REA, P1
[9]   IoT based Smart Traffic density Control using Image Processing [J].
Frank, Anilloy ;
Al Aamri, Yasser Salim Khamis ;
Zayegh, Amer .
2019 4TH MEC INTERNATIONAL CONFERENCE ON BIG DATA AND SMART CITY (ICBDSC), 2019, :169-172
[10]   Coupling of a redundant manipulator with a virtual reality environment to enhance human-robot cooperation [J].
Gammieri, Luigi ;
Schumann, Marco ;
Pelliccia, Luigi ;
Di Gironimo, Giuseppe ;
Klimant, Philipp .
10TH CIRP CONFERENCE ON INTELLIGENT COMPUTATION IN MANUFACTURING ENGINEERING - CIRP ICME '16, 2017, 62 :618-623