A human-in-the-loop approach for enhancing mobile robot navigation in presence of obstacles not detected by the sensory set

Author:

Ferracuti Francesco,Freddi Alessandro,Iarlori Sabrina,Monteriù Andrea,Omer Karameldeen Ibrahim Mohamed,Porcaro Camillo

Abstract

Human-in-the-loop approaches can greatly enhance the human–robot interaction by making the user an active part of the control loop, who can provide a feedback to the robot in order to augment its capabilities. Such feedback becomes even more important in all those situations where safety is of utmost concern, such as in assistive robotics. This study aims to realize a human-in-the-loop approach, where the human can provide a feedback to a specific robot, namely, a smart wheelchair, to augment its artificial sensory set, extending and improving its capabilities to detect and avoid obstacles. The feedback is provided by both a keyboard and a brain–computer interface: with this scope, the work has also included a protocol design phase to elicit and evoke human brain event–related potentials. The whole architecture has been validated within a simulated robotic environment, with electroencephalography signals acquired from different test subjects.

Publisher

Frontiers Media SA

Subject

Artificial Intelligence,Computer Science Applications

Reference43 articles.

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Semantic-Enhanced Path Planning for Safety-Centric Indoor Robots Navigation;2024 10th International Conference on Automation, Robotics and Applications (ICARA);2024-02-22

2. Fractal Dimension as a discriminative feature for high accuracy classification in motor imagery EEG-based brain-computer interface;Computer Methods and Programs in Biomedicine;2024-02

3. Mental Fatigue Evaluation for Passive and Active BCI Methods for Wheelchair-Robot During Human-in-the-Loop Control;2023 IEEE International Conference on Metrology for eXtended Reality, Artificial Intelligence and Neural Engineering (MetroXRAINE);2023-10-25

4. An Effective Method for Creating Virtual Doors and Borders to Prevent Autonomous Mobile Robots from Entering Restricted Areas;2023 9th International Conference on Automation, Robotics and Applications (ICARA);2023-02-10

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