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29 Julview: 10School of Astronautics
Three Research Achievements Led by HIT SOA Receive China’s State Science and Technology Awards

The 2025 State Science and Technology Awards Ceremony was held in Beijing on July 8. The project “Multimodal Hybrid Visual Servoing Control Technologies and Applications,” led by Professor Gao Huijun of HIT SOA, received the Second Prize of the State Technological Invention Award. The project “Key Technologies for High-Performance Tires and Their Green Intelligent Manufacturing,” led by Professor Wang Youshan, and another project led by Professor Zhu Jiaqi both received the Second Prize of the State Scientific and Technological Progress Award.


 

“Multimodal Hybrid Visual Servoing Control Technologies and Applications”

Responding to critical national engineering needs, this project overcame longstanding limitations in conventional visual servoing systems, including limited precision and poor adaptability. It pioneered hybrid visual servoing technologies integrating range-space and image-space information, force-space and image-space information, and robust visual servoing techniques capable of operating under multiple sources of uncertainty. The project also established an integrated technological framework for multimodal hybrid visual servoing and developed a range of specialized instruments and equipment. These technologies have been adopted by companies across more than ten industries, including electronics and healthcare, providing critical technological support for China’s independent innovation capabilities in high-end equipment manufacturing and advancing its goal of becoming a global manufacturing leader.


“Key Technologies for High-Performance Tires and Their Green Intelligent Manufacturing”

Addressing the strategic national demand for high-performance aircraft tires, this project pioneered a multi-source information fusion methodology for tire structural design and established an integrated software platform for digital tire design, performance analysis, evaluation, and intelligent optimization. It also developed SiO₂/C and CNT/C micro/nanocomposite materials and achieved breakthroughs in green manufacturing technologies and critical production equipment. These advances have significantly increased the service life of aircraft tires by enabling more takeoff-and-landing cycles, broken long-standing foreign technological monopolies, generated substantial economic benefits, and driven technological upgrading across the entire tire industry value chain—from materials and design to equipment and manufacturing. The project has also helped accelerate China’s transition from “Made in China” to “Created in China.”


China’s 2025 State Science and Technology Awards recognized 258 projects and 11 distinguished scientists. The awards included 51 State Natural Science Awards (3 First Prizes and 48 Second Prizes), 58 State Technological Invention Awards (3 First Prizes and 55 Second Prizes), and 149 State Scientific and Technological Progress Awards (3 Grand Prizes, 13 First Prizes, and 133 Second Prizes). In addition, nine individuals received the International Science and Technology Cooperation Award of the People’s Republic of China.

 

一审:宋子畅  

二审:陈东萍  

三审:智喜洋