 | 2010 |
| 12 |  | Tohru Kawabe:
Dividing Genetic Computation Method for Robust Receding Horizon Control Design.
Applied Comp. Int. Soft Computing 2010: (2010) |
| 2009 |
| 11 |  | Saya Hinaga,
Yoshiki Yamaguchi,
Tetsuhiko Yao,
Tohru Kawabe:
Dynamic reconfiguration system for real-time video processing.
FPL 2009: 691-694 |
| 2008 |
| 10 |  | Tohru Kawabe:
BMI Based RHC Method for Wheelchair.
ICCHP 2008: 1250-1260 |
| 9 |  | Tohru Kawabe:
RHC method for application to BMI-based systems.
Kybernetes 37(5): 637-651 (2008) |
| 2007 |
| 8 |  | Kenji Tanaka,
Takio Kurita,
Tohru Kawabe:
Selection of Import Vectors via Binary Particle Swarm Optimization and Cross-Validation for Kernel Logistic Regression.
IJCNN 2007: 1037-1042 |
| 2006 |
| 7 |  | Tohru Kawabe,
Takuto Motoyama:
Receding horizon control of sampled data systems based on dividing genetic computation.
Artificial Intelligence and Soft Computing 2006: 279-284 |
| 6 |  | Kenji Tanaka,
Takio Kurita,
Friedrich Meyer,
Luc Berthouze,
Tohru Kawabe:
Stepwise Feature Selection by Cross Validation for EEG-based Brain Computer Interface.
IJCNN 2006: 4672-4677 |
| 2004 |
| 5 |  | Tetsushi Ueta,
Takuji Kousaka,
Tohru Kawabe,
Sang-Ho Hyon:
Partial external force control for piecewise smooth dynamical systems.
Circuits, Signals, and Systems 2004: 108-113 |
| 2003 |
| 4 |  | Takanori Tagami,
Kenji Ikeda,
Tohru Kawabe:
Design of Robust I-PD Controller based on Paretooptimality: Comparison with Generalized ISE.
Modelling, Identification and Control 2003: 566-571 |
| 3 |  | Tohru Kawabe,
Kentaro Hirata:
A New Approach to Finite RHC of Constrained Systems with Disturbances.
Modelling, Identification and Control 2003: 591-594 |
| 2002 |
| 2 |  | Yoko Uwate,
Yoshifumi Nishio,
Tetsushi Ueta,
Tohru Kawabe,
Tohru Ikeguchi:
Solving ability of Hopfield neural network with chaotic noise and burst noise for quadratic assignment problem.
ISCAS (3) 2002: 465-468 |
| 1999 |
| 1 |  | Tohru Kawabe,
Takanori Tagami:
New Genetic Algorithm using Pareto Partitioning Method for Robust Partial Model Matching PID Design with Two Degrees of Freedom.
IIA/SOCO 1999 |