Kento Mitsuhashi
Papers
1
Total Citations
2
H-Index
1
About
Kento Mitsuhashi is a researcher in nonlinear dynamics and robotics, with a focus on underactuated locomotion systems and vibratory control. His work explores how frequency entrainment—a phenomenon where oscillatory systems synchronize with external periodic forcing—can be harnessed to regulate motion in mechanical systems. In his most cited paper, "Experimental Verification of Vibratory Conveyor System Based on Frequency Entrainment of Limit Cycle Walker" (2020), Mitsuhashi demonstrates that a wobbling mass in a limit cycle walker can control gait speed through entrainment, and that an external wobbling source can similarly entrain load objects to adjust transfer velocity in vibratory conveyors. Though his citation count is modest at 2, this work represents a novel integration of biological-inspired locomotion principles with industrial material handling, offering a foundation for energy-efficient, adaptive conveyor systems. Mitsuhashi’s contributions bridge theoretical nonlinear dynamics and practical engineering, highlighting the potential of entrainment-based control in robotics and automation. His research is particularly valuable for students and engineers interested in bio-inspired design, vibration-driven mechanisms, and the application of dynamical systems theory to real-world motion control.
Research Focus
Key Achievements
Top Papers
- 1