A.M. Hussein
Papers
6
Total Citations
98
H-Index
4
About
A.M. Hussein is a researcher whose work has fundamentally advanced the field of robotic motion planning, particularly in the areas of optimal trajectory generation and safe navigation in complex environments. Hussein’s most significant contribution is the novel application of Maxwell’s equations to model artificial potential fields, a breakthrough that completely eliminates the local minima problem that plagues traditional potential field methods. This work, published in 2003, has garnered 22 citations and remains a cornerstone for researchers seeking robust path planning solutions. Hussein’s highly cited 2000 paper (42 citations) on optimal constrained trajectory planning in 3D environments established a foundation for generating efficient, collision-free paths. Further contributions include pioneering smooth trajectory planning using a minimal-energy approach based on squared acceleration, rather than curvature, and developing adaptive motion prediction models for dynamic environments. Hussein’s fast path planning algorithm for robots with limited visibility addresses practical challenges in real-world navigation. With a total of nearly 100 citations across key publications, Hussein’s work continues to influence both theoretical developments and practical implementations in autonomous robotics.
Research Focus
Key Achievements
Top Papers
- 1On optimal constrained trajectory planning in 3D environments42 citations · 2000
- 2Motion planning using Maxwell's equations22 citations · 2003
- 3On smooth and safe trajectory planning in 2D environments14 citations · 2002
- 4An adaptive motion prediction model for trajectory planner systems14 citations · 2004
- 5
- 6Acceleration-based optimal trajectory planning in 3D environments2 citations · 2002