Robert Stampfler
Papers
2
Total Citations
21
H-Index
2
About
Robert Stampfler’s research career has been defined by foundational contributions to robotic vision and spatial perception, particularly in the calibration and orientation of robotic systems. His most influential work, “A new camera calibration method for robotic vision” (1990, 18 citations), introduced a practical technique for establishing the correspondence between 3D world coordinates and 2D camera coordinates—a critical step for enabling robots to accurately perceive and interact with their environment. This method provided a robust framework for guiding robots in object manipulation tasks, addressing a core challenge in early robotic vision. Stampfler later advanced the field with “A new approach to robot orientation by orthogonal lines” (2003, 3 citations), which proposed a novel method using images of three arbitrary orthogonal lines—common in indoor settings like warehouses and offices—to determine robot orientation. This work generalized earlier approaches, offering a more flexible solution for real-world navigation. While his citation counts reflect a focused, specialized impact, Stampfler’s contributions have been instrumental in laying groundwork for practical robotic vision systems, influencing subsequent research in calibration and orientation that continues to support autonomous robotics in structured environments.
Research Focus
Key Achievements
Top Papers
- 1A new camera calibration method for robotic vision18 citations · 1990
- 2A new approach to robot orientation by orthogonal lines3 citations · 2003