Papers
14
Total Citations
91
H-Index
6
About
Gheorghe Lazea is a robotics researcher whose work focuses on enabling mobile robots to perceive, navigate, and interact with unknown environments. His major contributions span three interconnected areas: robust object segmentation for pick-and-place tasks, open and modular robot architectures, and advanced localization techniques. His most cited work, "Robustly Segmenting Cylindrical and Box-like Objects in Cluttered Scenes using Depth Cameras" (18 citations), addresses the critical challenge of assistive robots operating in unstructured settings without prior knowledge of object shapes. Lazea has also made significant strides in solving the "kidnapped robot problem" through innovative adaptations of 2D SURF features for global localization (11 citations), and has developed practical LIDAR-based localization frameworks for indoor navigation (11 citations). His early work on the ZeeRO open architecture (12 citations) demonstrated how off-the-shelf components could achieve remarkable modularity in mobile robot design. Beyond perception and localization, Lazea has contributed to 3D scanning systems for urban scene segmentation, adaptive PID learning controllers for periodic motion, and dynamic object tracking using LIDAR. His research consistently bridges theoretical algorithms with practical robotic implementations, making his work valuable for both academic researchers and engineers developing real-world autonomous systems.
Research Focus
Key Achievements
Top Papers
- 1
- 2Towards Open Architectures for Mobile Robots: ZeeRO12 citations · 2006
- 3New approach in solving the kidnapped robot problem11 citations · 2010
- 4Laser Based Localization Techniques for Indoor Mobile Robots11 citations · 2009
- 53D Laser scanning system and 3D segmentation of urban scenes9 citations · 2010
- 6Graph Search Techniques for Mobile Robot Path Planning7 citations · 2010
- 7Classification within indoor environments using 3D perception5 citations · 2012
- 8
- 9An adaptive PID learning controller for periodic robot motion3 citations · 2004
- 10Pattern Recognition and Tracking Dynamic Objects with LIDAR3 citations · 2010