Papers

8

Total Citations

81

H-Index

7

About

An Mo is a robotics researcher whose work spans two critical domains: universal robotic grippers and bio-inspired legged locomotion. In grasping, Mo pioneered the development of pin-array grippers, introducing designs like the Pin Array Hand with ellipse-contour pins (2017) and the Concentric Rotation Pin Array (CRPA) gripper (2018). These innovations address a fundamental challenge—enabling robots to adaptively grasp diverse, unstructured objects without complex sensing or control. The CRPA gripper, in particular, achieves universal grasp capability through rotating pin arrays, a concept that has garnered over 30 citations across related publications. In legged robotics, Mo’s contributions focus on energy-efficient, animal-inspired locomotion. Their work on diaphragm ankle actuation (2022) and gastrocnemius-soleus spring-tendon mechanisms (2022) demonstrates how biological principles—like series elasticity and impulsive ankle push-off—can enable fast, human-like walking and hopping in bipedal robots. These studies, accumulating over 20 citations, highlight a trade-off between robustness and efficiency, as explored in their 2023 paper on slack-based tunable damping. Mo’s research is notable for bridging mechanical design and biological insight, offering practical pathways to more versatile, resilient robots.

Research Focus

Key Achievements

7
H-Index
8
Papers
81
Total Citations
10
Avg Citations/Paper
🏆 Most Cited Paper
Pin array hand: A universal robot gripper with pins of ellipse contour
17 citations · 2017
📈 Most Prolific Year: 2022 (2 Papers)
🤝 Key Collaborators: 16
🏛 Institutions: Tsinghua University, Max Planck Institute for Intelligent Systems

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
Content generated · 13 days ago