Yingli Li
Papers
2
Total Citations
4
H-Index
2
About
Yingli Li is a rising researcher in the field of mechanical and structural dynamics, with a focus on passive vibration-driven robotics and nonlinear energy harvesting. Her work centers on enhancing the low-frequency motion capabilities of autonomous robots without active control, a critical challenge for applications in exploration, monitoring, and soft robotics. Li’s major contributions include the integration of inertial amplification structures and magnetic bistable nonlinear energy sinks into passive vibration-driven robots, enabling efficient energy transfer and response at low frequencies—a regime typically difficult to achieve with conventional designs. Her 2024 paper on inertial amplification, which has already garnered 2 citations, provides comprehensive modeling, simulation, and experimental validation, while her 2025 follow-up on magnetic bistable energy sinks further demonstrates robust low-frequency performance. Though early in her career, Li’s work is notable for its innovative combination of structural optimization and nonlinear dynamics, offering a scalable path toward energy-autonomous robotic systems. Her research holds promise for advancing vibration-driven locomotion and vibration control in engineering, with potential impacts on environmental monitoring and infrastructure inspection.
Research Focus
Key Achievements
Top Papers
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- 2