2022 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS) · 2022 · 16 citations · 17 references
Socially aware robot navigation, where a robot is required to optimize its trajectory to maintain comfortable and compliant spatial interactions with humans in addition to reaching its goal without collisions, is a fundamental yet challenging task in the context of human-robot interaction. While existing learning-based methods have achieved better performance than the preceding model-based ones, they still have drawbacks: reinforcement learning depends on the handcrafted reward that is unlikely to effectively quantify broad social compliance, and can lead to reward exploitation problems; meanwhile, inverse rein-forcement learning suffers from the need for expensive human demonstrations. In this paper, we propose a feedback-efficient active preference learning approach, FAPL, that distills human comfort and expectation into a reward model to guide the robot agent to explore latent aspects of social compliance. We further introduce hybrid experience learning to improve the efficiency of human feedback and samples, and evaluate benefits of robot behaviors learned from FAPL through extensive simulation experiments and a user study (N=10) employing a physical robot to navigate with human subjects in real-world scenarios. Source code and experiment videos for this work are available at: https://sites.google.com/view/san-fapl.
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Likert Scale: Explored and Explained
Ankur Joshi, Saket Kale, Satish Chandel et al. · British Journal of Applied Science & Technology · 2015 · 3.3K citations
Socially aware motion planning with deep reinforcement learning
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Human-aware robot navigation: A survey
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