Hong Sik Min
Papers
3
Total Citations
17
H-Index
3
About
Hong Sik Min is a robotics researcher whose work centers on the design and control of cable-driven mechanisms, with a particular focus on creating safer, more adaptable robotic systems for assistive applications. His primary research areas include variable stiffness actuation, hybrid joint design, and wrench-feasible workspace analysis. Min’s major contribution lies in pioneering cable-driven parallel–series hybrid joints that can actively adjust system stiffness—a critical feature for wheelchair-mounted robotic manipulators that must balance rigidity with compliance to ensure user safety. His most cited work (2019, 8 citations) introduces a novel variable stiffness mechanism that allows these manipulators to adapt to different tasks, while his 2020 paper (6 citations) provides a foundational framework for analyzing the wrench-feasible workspace of such hybrid joints, directly informing their preliminary design. Through inverse kinematic tension analysis and optimal design strategies (2018, 3 citations), Min has systematically addressed the challenge of cable tension distribution, enabling more reliable and efficient robotic arms. His research not only advances the theoretical understanding of cable-driven systems but also holds tangible promise for improving the quality of life for individuals with mobility impairments, making him a notable figure in the field of assistive robotics.
Research Focus
Key Achievements
Top Papers
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