Yong Peng
Papers
2
Total Citations
4
H-Index
2
About
Yong Peng is a pioneering researcher in the field of passive vibration-driven robotics and nonlinear energy harvesting. His work focuses on enhancing the low-frequency motion capabilities of autonomous robots through innovative mechanical design and dynamic systems theory. Peng's major contributions include the development of inertial amplification structures that significantly improve the efficiency of passive vibration-driven robots, enabling them to operate effectively in low-frequency environments where traditional designs falter. His 2024 paper on this topic has garnered 2 citations, laying foundational insights for future robotic locomotion systems. More recently, Peng introduced magnetic bistable nonlinear energy sinks in his 2025 study, demonstrating a novel approach to achieving efficient low-frequency response in passive robots. This work, also cited twice, showcases his ability to integrate nonlinear dynamics with practical engineering solutions. Peng's research is notable for its potential applications in search-and-rescue missions, environmental monitoring, and exploration of challenging terrains, where energy efficiency and low-frequency adaptability are critical. His achievements highlight a commitment to advancing the frontier of passive robotics, offering elegant mechanical solutions to complex motion challenges.
Research Focus
Key Achievements
Top Papers
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- 2