Zhenkun Lin
Papers
13
Total Citations
87
H-Index
6
About
Zhenkun Lin is a robotics researcher whose work spans rescue robotics, biped locomotion, and dexterous manipulation, with a consistent focus on bridging biological inspiration with practical engineering solutions. His most widely cited contribution, a 2016 study on multi-linked rescue robots (20 citations), introduced novel cutting and jacking robots designed to penetrate rubble and create safe spaces for survivors in post-earthquake scenarios — addressing a critical gap in disaster response technology. Lin has made substantial contributions to biped robot development, exploring human-like walking gaits with heel-off and toe support, bio-inspired knee joints driven by pneumatic artificial muscles, and pneumatic stiffness-adjustable foot systems that improve stability on uneven terrain. His research on hysteresis compensation in pneumatic muscle-actuated joints demonstrates a rigorous approach to overcoming nonlinear control challenges. More recently, Lin has extended his expertise into robotic manipulation, investigating force/torque sensor-based object reorientation with two-fingered grippers (11 citations) and multiphase trajectory generation for enhanced bipedal stability. Collectively, his work reflects a sustained commitment to making robots more capable, adaptable, and biologically informed — contributions that continue to influence researchers working at the intersection of biomechanics and advanced robotics.
Research Focus
Key Achievements
Top Papers
- 1Two multi-linked rescue robots: design, construction and field tests20 citations · 2016
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- 3Human-Like Walking with Heel Off and Toe Support for Biped Robot11 citations · 2017
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- 6A bio-inspired knee joint for biped robots6 citations · 2016
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- 10The development of pneumatic stiffness-adjustable foot for bipedal robot3 citations · 2017