Minoru Tanabe
Papers
2
Total Citations
37
H-Index
2
About
Minoru Tanabe is a pioneering researcher in autonomous mobile robotics, with a primary focus on hierarchical control systems and behavior-decision algorithms. His most influential work, "Hierarchical control for autonomous mobile robots with behavior-decision fuzzy algorithm" (2003), has garnered 24 citations and introduced a novel construction method for behavior-decision systems using fuzzy algorithms. This approach uniquely integrates both crisp and fuzzy processing sequences, enabling robots to autonomously judge and adapt their purposes in real-time. Tanabe further laid foundational groundwork with his earlier 1993 paper, "Behavior-decision fuzzy algorithm for autonomous mobile robots" (13 citations), which established core principles for tuning algorithms that grant robots autonomous decision-making capabilities. His contributions are particularly notable for advancing the practical application of fuzzy logic in robotics, bridging theoretical control systems with real-world autonomous navigation. Tanabe’s work remains influential for researchers developing adaptive, intelligent robotic systems, as his hierarchical frameworks continue to inform modern approaches to autonomous behavior and decision-making in complex environments.
Research Focus
Key Achievements
Top Papers
- 1
- 2Behavior-decision fuzzy algorithm for autonomous mobile robots13 citations · 1993