Meng Yang
Papers
2
Total Citations
5
H-Index
2
About
Meng Yang is an emerging researcher specializing in hydraulic robotics, advanced control systems, and intelligent mechatronics. Their work focuses on the design, analysis, and precision control of hydraulic robotic joints — a technically demanding field that sits at the intersection of mechanical engineering, fluid dynamics, and control theory. Among their most notable contributions is a 2023 study introducing a novel ball double-screw hydraulic robot knee joint, which has already attracted 3 citations, demonstrating early recognition within the community. Complementing this, their 2022 work on high-precision adaptive fuzzy control addresses some of the most persistent challenges in electro-hydraulic servo systems — namely, strong nonlinearity, parameter uncertainty driven by temperature variation, and insufficient control accuracy. By developing an adaptive fuzzy control framework, Yang proposed a meaningful solution to limitations that have long constrained the reliability of hydraulic robotic joints in real-world applications. Though Yang's citation record reflects the early stage of their career, the technical depth and practical relevance of their research signal a promising trajectory. Students and engineers working on robotic actuation, rehabilitation robotics, or industrial automation will find Yang's contributions particularly valuable as the field moves toward more precise and adaptable hydraulic systems.
Research Focus
Key Achievements
Top Papers
- 1
- 2High Precision Adaptive Fuzzy Control Method for Hydraulic Robot Joint2 citations · 2022