Hassene Seddik

Tunis University

Papers

12

Total Citations

149

H-Index

6

About

Hassene Seddik is a robotics and intelligent control researcher whose work centers on autonomous mobile robot navigation, intelligent control systems, and AI-driven path planning. His research integrates machine learning, fuzzy logic, and neural network methodologies to advance the autonomy and efficiency of robotic systems across terrestrial and underwater environments. Seddik's most impactful contribution, "Design of a PID Optimized Neural Networks and PD Fuzzy Logic Controllers for a Two-Wheeled Mobile Robot" (2020), has garnered 78 citations, establishing him as a notable voice in hybrid intelligent control design. This work introduced a novel Smart Neural Network PID Controller (SNNPIDC) alongside a PD fuzzy logic controller, significantly advancing trajectory control for differential mobile robots. His broader research portfolio explores maze navigation using neuro-fuzzy approaches, obstacle avoidance with fuzzy logic, recursive neural network command prediction, and 3D simulation environments for algorithm testing. More recently, Seddik has expanded into underwater robotics, proposing depth controllers for Remotely Operated Vehicles, and has contributed to optimized ROS-based SLAM implementation. Collectively, his publications — accumulating over 140 citations — reflect a consistent commitment to bridging theoretical intelligent control with practical robotic applications, making his work highly relevant for students and researchers working at the intersection of robotics, control engineering, and artificial intelligence.

Research Focus

Key Achievements

6
H-Index
12
Papers
149
Total Citations
12
Avg Citations/Paper
🏆 Most Cited Paper
Design of a PID optimized neural networks and PD fuzzy logic controllers for a two‐wheeled mobile robot
78 citations · 2020
📈 Most Prolific Year: 2019 (4 Papers)
🤝 Key Collaborators: 7
🏛 Institutions: Tunis University

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
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