Mrs. Tong Wu | Mechanical Engineering | Best Academic Researcher Award
student, Qilu University of Technology, China.          Â
Tong Wu is an emerging researcher passionate about agricultural robotics and industrial design. Currently pursuing a Master’s degree in Art and Industrial Design at Qilu University of Technology, Tong Wu is driven by a vision to integrate advanced design with agricultural innovation. With a background in product design and numerous design awards, Tong Wu’s work focuses on enhancing mobility and performance of agricultural robots, addressing challenges in automation and sustainability within farming environments. 🚜🎨
Professional Profile
🎓 Education
Tong Wu holds a Bachelor’s degree in Product Design from Qilu University of Technology, awarded in 2022. 🎓 Currently, Tong Wu is advancing academic pursuits as a Master’s student in Art and Industrial Design at the School of Art and Design, Qilu University of Technology (2023–Present). This educational journey blends creative design principles with cutting-edge robotics engineering to innovate agricultural technologies. 📚✨
đź’Ľ Experience
As a budding researcher, Tong Wu has immersed deeply in the design and development of agricultural robots during the academic tenure. With hands-on experience in mechanical optimization and autonomous system design, Tong Wu is actively engaged in research projects focusing on hybrid mobility systems for agricultural applications. This includes analyzing the performance of wheeled and tracked systems on variable terrains. đźšśđź”§
🔬 Research Interests
Tong Wu’s research interests revolve around agricultural harvesting robots, with a strong focus on mechanical innovation and environmental adaptability. Key areas include optimizing hybrid mobility systems, improving autonomous navigation in challenging agricultural terrains, and developing sustainable robotic solutions. The primary goal is to create efficient, user-friendly robots that enhance productivity and resilience in modern farming operations. 🌱🤖
🏆 Awards
📚 Top Noted Publications
Designing Hybrid Mobility for Agricultural Robots: Performance Analysis of Wheeled and Tracked Systems in Variable Terrain” (Machines, 2024).
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