Timothy Patterson
Papers
6
Total Citations
305
H-Index
5
About
Timothy Patterson is a pioneering figure in the field of robot elasticity and compliance, whose work has fundamentally shaped how robotic systems are modeled and understood. His research centers on the geometric and mathematical foundations of robot stiffness and compliance, leveraging screw theory to unlock new insights into the elastic behavior of robotic structures. Patterson’s major contributions include the development of a novel geometric decomposition that diagonalizes the 6×6 stiffness and compliance matrices, a breakthrough that provides a clear, intuitive framework for analyzing robot elasticity. He also introduced the concept of compliant axes, establishing the necessary and sufficient conditions for their existence, which led to a new classification of robot compliance. His most cited work, "Structure of Robot Compliance" (145 citations), demonstrates the power of screw theory in characterizing compliance matrix eigenvalues, while his subsequent papers, including "A Classification of Robot Compliance" (71 citations) and the two-part series on geometrical properties of modeled robot elasticity, have become foundational texts in the field. Patterson’s achievements include the proposal of a generalized center of elasticity, further cementing his legacy as a key architect of modern robot compliance theory.
Research Focus
Key Achievements
Top Papers
- 1Structure of Robot Compliance145 citations · 1993
- 2A Classification of Robot Compliance71 citations · 1993
- 3Geometrical Properties of Modelled Robot Elasticity: Part I — Decomposition33 citations · 1992
- 4Generalized center of compliance and stiffness32 citations · 2003
- 5
- 6Geometrical decomposition of robot elasticity2 citations · 2005