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Virtual Reality Platform to Develop and Test Applications on Human-Robot Social Interaction
Robotics simulation has been an integral part of research and development in the robotics area. The simulation eliminates the possibility of harm to sensors, motors, and the physical structure of a real robot by enabling robotics application testing to be carried out quickly and affordably without b...
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creator | Bottega, Jair Augusto Steinmetz, Raul Kolling, Alisson Henrique Kich, Victor Augusto De Jesus, Junior Costa Grando, Ricardo Bedin Gamarra, Daniel Fernando Tello |
description | Robotics simulation has been an integral part of research and development in the robotics area. The simulation eliminates the possibility of harm to sensors, motors, and the physical structure of a real robot by enabling robotics application testing to be carried out quickly and affordably without being subjected to mechanical or electronic errors. Simulation through virtual reality (VR) offers a more immersive experience by providing better visual cues of environments, making it an appealing alternative for interacting with simulated robots. This immersion is crucial, particularly when discussing sociable robots, a subarea of the human-robot interaction (HRI) field. The widespread use of robots in daily life depends on HRI. In the future, robots will be able to interact effectively with people to perform a variety of tasks in human civilization. It is crucial to develop simple and understandable interfaces for robots as they begin to proliferate in the personal workspace. Due to this, in this study, we implement a VR robotic framework with ready-to-use tools and packages to enhance research and application development in social HRI. Since the entire VR interface is an open-source project, the tests can be conducted in an immersive environment without needing a physical robot. |
doi_str_mv | 10.1109/LARS/SBR/WRE56824.2022.9996025 |
format | conference_proceeding |
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The simulation eliminates the possibility of harm to sensors, motors, and the physical structure of a real robot by enabling robotics application testing to be carried out quickly and affordably without being subjected to mechanical or electronic errors. Simulation through virtual reality (VR) offers a more immersive experience by providing better visual cues of environments, making it an appealing alternative for interacting with simulated robots. This immersion is crucial, particularly when discussing sociable robots, a subarea of the human-robot interaction (HRI) field. The widespread use of robots in daily life depends on HRI. In the future, robots will be able to interact effectively with people to perform a variety of tasks in human civilization. It is crucial to develop simple and understandable interfaces for robots as they begin to proliferate in the personal workspace. 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identifier | EISSN: 2643-685X |
ispartof | 2022 Latin American Robotics Symposium (LARS), 2022 Brazilian Symposium on Robotics (SBR), and 2022 Workshop on Robotics in Education (WRE), 2022, p.1-6 |
issn | 2643-685X |
language | eng |
recordid | cdi_ieee_primary_9996025 |
source | IEEE Xplore All Conference Series |
subjects | Feature extraction Human-robot interaction Robot sensing systems Solid modeling Speech recognition Task analysis Visualization |
title | Virtual Reality Platform to Develop and Test Applications on Human-Robot Social Interaction |
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