Jul 2026· International Conference on Smart Communications and Networking· pp. 1-6· 0 citations· 15 references
Abstract
Human–Robot Interaction (HRI) is a rapidly evolving research area focused on enabling intuitive, efficient, and reliable communication between humans and robotic systems. Unlike conventional robotic control interfaces, we propose a contactless control system that leverages American Sign Language (ASL) as a natural, non-intrusive, and accessible modality for remote robot operation. Our framework integrates computer vision, gesture recognition, and machine learning to achieve accurate real-time interpretation of ASL gestures and their direct translation into robotic commands. To ensure robust gesture understanding, the system employs a Spatial–Temporal Network that captures both the spatial relationships of hand and body positions as well as the temporal dynamics of gesture sequences. Recognized gestures are mapped to precise control commands that drive the motors of a robotic car, enabling responsive and accurate navigation based solely on sign-based inputs. Extensive experiments demonstrate that the proposed system achieves high gesture recognition accuracy across multiple conditions, including variations in speed, angle, and handedness, while maintaining safe and reliable robot operation. Tasks executed using this framework are performed consistently and accurately, validating its effectiveness. This paper highlights the potential of ASL-based, contactless robotic control to enhance accessibility, safety, and intuitiveness in human–robot interaction, paving the way for more natural and inclusive interfaces in autonomous systems.
Preliminary experiments on several representative arm gestures indicate that the proposed method can produce meaningful imitative motions from monocular RGB input only, while also highlighting limitations in more complex poses and wrist-related movements.
Anastasiya Ihnatovich, Igor Farkas· arXiv.org· 0 citations
This study presents a real-time vision-based gesture control framework for mobile robots using a monocular RGB camera. The goal is to enable intuitive and low-cost human– robot interaction without requiring specialized sensing hardware. The proposed system combines geometric rule-based reasoning with a Support Vector M...
Chuyu Guo· 2026 IEEE International Conf...· 0 citations
Humanoid robots have become increasingly popular in applications such as social interaction, education, and service roles, which drives the need for more natural and efficient human-robot interactions. However, currently available humanoid heads often face limitations, including high costs, mechanical complexity, and l...
Safe and intuitive human robot interaction (HRI) requires precise regulation of contact forces and torques while adapting to dynamic and uncertain human behavior. Traditional impedance and admittance control strategies rely on fixed parameters and accurate system modeling, which often limit their performance in unstruc...
Vishal Khanna· i-manager's Journal on Augme...· 0 citations
Physically grounded robot intelligence requires robots to perceive, reason about, and regulate their interactions with the physical world. This capability is particularly critical in contact-sensitive manipulation, where successful task execution depends not only on visual perception and motion generation, but also on...
Shilin Shan, Chu-Hao Zhou, Rui-Ze Wang et al.· 0 citations
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