Xinping Shan
Papers
2
Total Citations
7
H-Index
2
About
Xinping Shan is a leading researcher in advanced mechanical transmission systems, with a primary focus on planetary roller screw mechanisms (PRSMs) and their applications in high-precision, extreme-condition environments. Their work bridges critical gaps between theoretical modeling and real-world performance, particularly in aerospace, automotive, and humanoid robotics. Shan’s most cited paper, “Performance and challenges of planetary roller screw mechanism in complex conditions: A comprehensive review of recent progress” (2025, 5 citations), provides a seminal overview of PRSM behavior under demanding operational scenarios, establishing a foundational reference for the field. In a complementary study, “Theoretical and experimental investigation of the differential planetary roller screw mechanism condition monitoring and public dataset” (2024, 2 citations), Shan introduced an innovative condition monitoring test rig for differential planetary roller screws (DPRS), generating a publicly available dataset that enables researchers to analyze degradation patterns under variable loads and speeds. This work is particularly notable for its practical relevance to humanoid robotics and aerospace actuation. With a growing citation footprint, Shan’s contributions are shaping the next generation of electromechanical actuators, offering critical insights into reliability, performance optimization, and predictive maintenance for complex mechanical systems.
Research Focus
Key Achievements
Top Papers
- 1
- 2