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.
SDG 4 — Quality Education
SDG 8 — Decent Work and Economic Growth
SDG 9 — Industry, Innovation and Infrastructure
SDG 11 — Sustainable Cities and Communities
SDG 12 — Responsible Consumption and Production
SDG 13 — Climate Action
SDG 17 — Partnerships for the Goals
This track focuses on the latest innovations in robotic systems specifically designed for aviation applications. It aims to explore the integration of robotics into various facets of aerospace engineering, enhancing operational efficiency and safety.
This session will delve into the unique challenges faced by aerial robotics, including environmental factors and technical limitations. Participants will discuss innovative solutions and methodologies to overcome these obstacles in the field.
This track examines the current trends in automation technologies within the aerospace sector. It will highlight how automation is transforming traditional aerospace practices and improving overall performance.
Focusing on navigation strategies for unmanned aerial vehicles, this session will cover cutting-edge techniques in robotic navigation. Discussions will include sensor integration, mapping algorithms, and real-time decision-making.
This track will explore the development and implementation of advanced control algorithms for autonomous aerial robots. Participants will share insights on enhancing stability, responsiveness, and adaptability in dynamic environments.
This session will investigate the role of robotic perception in enhancing the capabilities of aerospace systems. Topics will include sensor fusion, machine learning, and the impact of perception on operational effectiveness.
This track addresses the critical aspects of human-robot interaction within aviation contexts. It will explore design principles, user experience, and the implications of effective collaboration between humans and robots.
Focusing on the coordination of multiple robotic systems in aerial operations, this session will discuss strategies for effective teamwork and communication among robots. Case studies and theoretical frameworks will be presented.
This track will cover methodologies for robotic path planning in complex and dynamic environments. Participants will discuss algorithms that enhance navigational efficiency and obstacle avoidance.
This session will highlight the latest advancements in robotic sensors and their applications in aerospace. Discussions will focus on sensor technologies that improve data collection and operational capabilities.
This track will explore the role of intelligent automation in aerospace maintenance systems. It will examine how robotic solutions can enhance maintenance efficiency, reduce downtime, and improve safety.
SNRI maintains uninterrupted academic processes in the current global situation. Participants can engage and publish through online and blended conference formats.
PLEASE READ: CLOSING ENABLED IN 20S