Sabine Stifter
Papers
7
Total Citations
96
H-Index
4
About
Sabine Stifter’s research career has been defined by foundational contributions to robot kinematics and collision detection, laying critical groundwork for modern robotics. Her most influential work, *Advances in Robot Kinematics* (1991, 55 citations), established her as a key figure in the field, particularly through her emphasis on symbolic computation to solve complex kinematic problems. Stifter’s 1994 paper on algebraic methods for computing inverse kinematics (20 citations) provided elegant mathematical frameworks that remain relevant for robotic arm control. She also pioneered practical collision-avoidance techniques, including a generalization of the Roider method for 3D collision problems (1989) and collision detection algorithms for the robot simulation system SMART (1992). Beyond robotics, Stifter explored parallel computing models, investigating shortest non-synchronized motions for shared-memory CREW systems (1993). Her work on convex-object collision detection (1989, 7 citations) further demonstrated her ability to bridge theoretical geometry with real-world robotic applications. While her citation counts reflect a focused, specialized impact, Stifter’s contributions—particularly in symbolic computation and inverse kinematics—have influenced generations of roboticists. Her research remains a testament to the power of combining algebraic rigor with practical engineering challenges.
Research Focus
Key Achievements
Top Papers
- 1Advances in Robot Kinematics55 citations · 1991
- 2Algebraic methods for computing inverse kinematics20 citations · 1994
- 3Collision of convex objects7 citations · 1989
- 4Collision detection in the robot simulation system SMART4 citations · 1992
- 5Advances in robot kinematics: with emphasis on symbolic computation4 citations · 1991
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