About Us
The Beihang Global Science and Technology Innovation Competition for Student Teams is aimed at student scientific and technological innovation that integrates multiple disciplines. It is committed to further deepening international exchanges and cooperation among students in various fields, gathering global cutting-edge concepts, empowering and incubating more future innovative forces, and cultivating and discovering high-quality top-notch innovative talents in the field of aerospace and information.
The competition focuses on intelligent and diversified student scientific and technological innovation practices. We look forward to cross-disciplinary, compound, and innovative top-notch talents with international vision, excellent knowledge, ability, and quality being seen by the world on this stage, and jointly creating a grand event for international scientific and technological innovation exchanges for students that integrates China and foreign countries.
Competition Categories
Future Aircraft Digital Design
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This track involves multidisciplinary integrated design focused on the overall concept of aircraft. Utilizing existing aircraft design and virtual simulation software platforms, the track involves the development of advanced overall design scenarios and conceptual designs for future medium-sized aircraft. The aim is to bridge the current market gap between narrow-body and wide-body aircraft, creating a cohesive solution that aligns with both requirements and design proposals.
Unmanned Vehicle Challenge
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Centered around the theme of "Lunar Survival", this track integrates intelligent vehicle technology, deep learning, computer vision, and large language model technologies. Participants will autonomously design and assemble intelligent vehicle models to compete in tasks such as autonomous patrolling, cargo transport, power tower repair, and emergency avoidance on the lunar surface within a set timeframe.
Bionic Legged Robot Challenge
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Focused on a "Lunar Rescue" mission scenario, the committee will simulate a lunar environment indoors, including soft sandy soil, hard structured soil, and circular raised depressions. Teams will independently develop and design bionic legged robots to navigate through various terrains such as soft lunar soil, slopes, steps, double log bridges, and hills. The robots will deliver a rescue package to an astronaut's stranded area and reach the endpoint, with scoring based on the completion of these tasks.
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