Guoxiang Fu
Papers
2
Total Citations
8
H-Index
2
About
Guoxiang Fu is a rising figure in the field of robotic prosthetics and interactive actuation, with research focused on enhancing energy efficiency and adaptability in assistive devices. His major contributions center on the development of novel elastic actuator systems that improve both mechanical performance and user interaction. In his 2024 work on a robotic transtibial prosthesis, Fu introduced equilibrium-adjustable parallel springs, a design innovation that significantly improves energy efficiency during slope walking—a critical challenge for lower-limb amputees. This work, which has already garnered 6 citations, addresses the dual goals of reducing metabolic cost for the user and minimizing prosthetic energy consumption. More recently, in 2025, Fu extended his expertise to interactive robotics with the design of a mode-switchable elastic actuator, demonstrating his versatility in creating systems that can adapt to varying task demands. Though early in his career, Fu’s research is notable for its practical focus on real-world mobility challenges, positioning him as a promising contributor to the next generation of adaptive, energy-efficient robotic systems.
Research Focus
Key Achievements
Top Papers
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- 2