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Aligned with
This conference contributes to global sustainability by aligning its research discussions and academic sessions with key United Nations Sustainable Development Goals. It fosters knowledge exchange, innovation, and collaborative engagement.
This track focuses on the development and implementation of assistive robotic technologies aimed at enhancing the quality of life for elderly individuals. Topics include robotic companions, mobility aids, and systems designed to support independent living.
This session will explore advancements in autonomous navigation technologies for assistive devices, including wheelchairs and navigation aids for visually impaired users. Emphasis will be placed on algorithms, sensors, and real-world applications.
This track examines the role of social robots in therapeutic settings, particularly for children with autism. Discussions will include design considerations, interaction methodologies, and the impact of social robots on developmental outcomes.
This session will investigate the use of telepresence robots for remote communication and interaction, focusing on their applications in healthcare and social engagement. The effectiveness of these systems in bridging distances will be critically analyzed.
This track will delve into the latest innovations in prosthetic technologies, particularly prosthetic hands that enhance user functionality. Research on automated manipulation systems will also be highlighted.
This session will focus on the design and deployment of multi-robot teams that assist individuals with disabilities. Topics will include coordination strategies, user interaction, and case studies demonstrating their effectiveness.
This track will explore the integration of wearable robotics in assistive technology, addressing both design and user experience. Innovations in exoskeletons and wearable devices that enhance mobility will be discussed.
This session will investigate the dynamics of human-robot interaction, focusing on user-centered design principles and interaction paradigms in assistive robotics. Qualitative studies and user feedback will be emphasized.
This track will cover systems engineering approaches applied to the design and integration of assistive robotic systems. Emphasis will be placed on lifecycle management, reliability, and usability.
This session will explore the application of artificial intelligence techniques in assistive robotics, including machine learning, computer vision, and natural language processing. The focus will be on enhancing robot autonomy and user interaction.
This track invites discussions on interdisciplinary methodologies that combine engineering, healthcare, and social sciences in the field of assistive robotics. Collaborative research efforts and innovative solutions will be highlighted.