Akira Nomiyama
Papers
4
Total Citations
14
H-Index
3
About
Akira Nomiyama’s research focuses on the intersection of stochastic control theory and fuzzy logic, with a primary application in autonomous mobile robotics. His major contribution lies in pioneering a "stochastic fuzzy control" framework, which integrates probabilistic estimation with fuzzy reasoning to design controllers for nonlinear, multi-input-multi-output systems. Unlike conventional fuzzy controllers that rely on heuristic rules, Nomiyama’s approach enables systematic gain design using pole assignment and linear min-max control laws, ensuring asymptotic stability within defined tolerances. He demonstrated the practical utility of this method by applying it to trajectory tracking and path following for mobile robots with two independent driving wheels. While his most-cited works—including his 2002 paper on stochastic fuzzy control for autonomous mobile robots—each hold around 4 citations, their collective impact is notable for advancing a rigorous, stability-assured alternative to traditional fuzzy control. Nomiyama’s work provides a bridge between stochastic estimation and fuzzy decision-making, offering a mathematically grounded pathway for designing robust controllers in uncertain, real-world environments.
Research Focus
Key Achievements
Top Papers
- 1Stochastic fuzzy control for an autonomous mobile robot4 citations · 2002
- 2
- 3Stochastic fuzzy control law for path tracking in mobile robot4 citations · 1996
- 4A Design of Stochastic Fuzzy Controller as a Linear Min-Max Control2 citations · 1998