Papers
6
Total Citations
32
H-Index
3
About
Mircea Popa’s research focuses on the core challenges of mobile robotics: localization, navigation, and mapping in indoor environments. His major contributions lie in developing robust solutions for global localization, particularly addressing the “kidnapped robot problem,” where a robot must determine its position without prior knowledge. Popa pioneered the adaptation of 2D SURF (Speeded Up Robust Features) for this task, enabling reliable position recovery using visual features. He also advanced laser-based localization techniques using LIDAR measurements, creating a generic framework for state estimation and registration that remains practical for real-world applications. His work on visual odometer systems further enhanced robot navigation by tracking SURF features across stereo image pairs to build 3D point clouds and correct robot trajectories. Additionally, Popa explored path planning with Markov Decision Problems and dynamic object detection using stereo-vision, contributing to obstacle avoidance capabilities. While his citation counts (ranging from 2 to 11) reflect a focused, early-career impact, his integrated approach to combining visual and laser data for indoor navigation has provided foundational insights for students and researchers in robotics. Popa’s work exemplifies the practical engineering required to bridge perception and action in autonomous systems.
Research Focus
Key Achievements
Top Papers
- 1New approach in solving the kidnapped robot problem11 citations · 2010
- 2Laser Based Localization Techniques for Indoor Mobile Robots11 citations · 2009
- 3
- 4Indoor Navigation of a Wheeled Mobile Robot3 citations · 2008
- 5Path planning and dynamic objects detection2 citations · 2009
- 6Mobile robot navigation with obstacle avoidance capability2 citations · 2008