Theresa Egger
Papers
1
Total Citations
10
H-Index
1
About
Theresa Egger is a researcher at the forefront of 3D imaging and spatial computing, with a primary focus on high-performance indoor positioning and pose estimation. Her most-cited work, a 2017 study on time-of-flight (ToF) 3D imaging, addresses the growing demand for precise location-awareness in industrial automation, virtual and augmented reality, and autonomous robotics. Egger’s key contribution lies in advancing inside-out localization and tracking systems that leverage image sensors to determine both position and orientation with exceptional accuracy. This work has garnered 10 citations, reflecting its relevance to engineers and scientists developing next-generation navigation and interaction technologies. By tackling the challenge of reliable, real-time spatial mapping in complex indoor environments, Egger has helped bridge the gap between theoretical sensor capabilities and practical deployment. Her research is particularly notable for its emphasis on balancing computational efficiency with robustness, a critical requirement for applications ranging from warehouse logistics to immersive user experiences. For students and researchers exploring the intersection of computer vision, sensor fusion, and human-computer interaction, Egger’s contributions offer a foundational understanding of how ToF systems can enable smarter, more responsive environments.
Research Focus
Key Achievements
Top Papers
- 1