D. Feroze Naina Mohamed
Papers
1
Total Citations
35
H-Index
1
About
Dr. D. Feroze Naina Mohamed is a leading researcher in robotics and estimation theory, with a primary focus on advancing state estimation techniques for 3D rigid-body transformations. His most influential work, "Estimating SE(3) elements using a dual quaternion based linear Kalman filter" (2016, 35 citations), addresses a critical challenge in robotics: accurately estimating the special Euclidean group SE(3) elements—which describe both rotation and translation—using sensor data. Traditional Kalman filters rely on linearization of nonlinear measurement models, often leading to inaccurate estimates and divergence. Dr. Mohamed's breakthrough introduces a dual quaternion representation that enables a truly linear Kalman filter formulation, eliminating the need for linearization and significantly improving estimation robustness. This work has profound implications for robotic applications including 3D registration, object tracking, sensor calibration, and simultaneous localization and mapping (SLAM). By providing a mathematically elegant and computationally efficient solution to a fundamental estimation problem, Dr. Mohamed has established himself as a key contributor to modern robotics and control systems, with his methods being adopted by researchers and engineers seeking reliable, drift-free pose estimation in real-world autonomous systems.
Research Focus
Key Achievements
Top Papers
- 1Estimating SE(3) elements using a dual quaternion based linear Kalman filter35 citations · 2016