Yassine Boutereaa
Papers
3
Total Citations
17
H-Index
3
About
Yassine Boutereaa is a robotics researcher whose work centers on autonomous mobile robot navigation, path planning, and obstacle avoidance in dynamic and unknown environments. His research addresses one of the field's most persistent challenges: enabling robots to navigate intelligently and safely without prior knowledge of their surroundings. Boutereaa has made notable contributions through the development of collision-free navigation algorithms capable of handling both static and dynamic obstacles, integrating global and local navigation strategies into cohesive intelligent systems. His 2015 paper on autonomous navigation algorithm design has garnered 7 citations, while his 2016 work on integrated environment representation for dynamic settings has attracted 6 citations, reflecting steady recognition within the robotics community. Additionally, his investigation into the Beam Curvature Method offers a reactive, computationally efficient approach to local obstacle avoidance for two-wheeled mobile robots, further demonstrating his focus on practical, real-world robotic applications. Together, his publications form a coherent body of work aimed at advancing the reliability and intelligence of autonomous robotic systems, making his research particularly relevant for students and engineers working in mobile robotics, autonomous vehicles, and intelligent control systems.
Research Focus
Key Achievements
Top Papers
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