Joseph Masterjohn
Papers
5
Total Citations
21
H-Index
3
About
Joseph Masterjohn is a leading researcher in robotics and computational contact mechanics, whose work bridges the gap between theoretical rigor and practical robotic performance. His most impactful contributions center on developing convex formulations for frictional contact between rigid and deformable bodies, a breakthrough that enables stable and efficient simulation of complex physical interactions. This work, including his highly cited 2023 paper (7 citations), introduces a novel corotational material model with a positive semi-definite Hessian, extending the frontier of compliant contact simulation. Masterjohn is also recognized for his pioneering work in humanoid robotics, particularly in the RoboCup 3D Soccer Simulation League. His research on decision-making for robotic biped goalkeepers (7 citations) combines linear regression and Kalman filters to enhance perception and behavior. Additionally, his development of an omni-directional kick engine for humanoid robots, optimized through parameter tuning, has advanced dynamic locomotion and ball manipulation. More recently, his Irrotational Contact Fields (ICF) framework (2025) provides convex approximations for experimentally validated contact models, offering robust solutions for real-world robotic systems. With a career spanning both foundational theory and applied robotics, Masterjohn’s work is essential reading for researchers in contact mechanics, humanoid locomotion, and multi-body simulation.
Research Focus
Key Achievements
Top Papers
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- 4Irrotational Contact Fields2 citations · 2025
- 5Optimizing Kick Trajectory: A Comparative Study2 citations · 2018