Takao Ohuchi
Papers
4
Total Citations
24
H-Index
3
About
Takao Ohuchi is a pioneering researcher in intelligent mobile robotics, with a career focused on enabling robot vehicles to navigate and control their motion autonomously in dynamic environments. His foundational work in the early 1990s established novel control architectures that blend fuzzy logic and neural networks to solve critical challenges in vehicle guidance. Ohuchi’s most influential paper, “Target Point Tracking Control of Robot Vehicle by Fuzzy Reasoning” (1991, 11 citations), introduced a fuzzy control system that adjusts speed and steering based on one or two target points, a key step toward high-speed, autonomous navigation. He further advanced the field by integrating neural networks for adaptive speed control (1992, 5 citations) and for simultaneous path planning and obstacle avoidance (1996, 6 citations), demonstrating how cascaded neural networks could generate smooth trajectories in real time. His earlier work on transfer movement control using circular arcs (1988) laid the geometric groundwork for visually natural path generation. Though his citation counts are modest, Ohuchi’s contributions are notable for their early synthesis of soft computing techniques—fuzzy reasoning and neural networks—to solve practical motion control problems, making him a quiet but significant figure in the evolution of intelligent vehicle control.
Research Focus
Key Achievements
Top Papers
- 1Target Point Tracking Control of Robot Vehicle by Fuzzy Reasoning11 citations · 1991
- 2Obstacle avoidance travel control of robot vehicle using neural network6 citations · 1996
- 3Adaptive Speed Control of a Robot Vehicle by Neural Networks5 citations · 1992
- 4Transfer movement control of mobile robot using two circular arcs2 citations · 1988