Searching for authors named "Fumiya Iida" – sorted by Relevance.
-
Exploiting Friction for the Locomotion of a Hopping Robot
- , they have successfully demonstrated snake-like loco- Fumiya Iida Artificial Intelligence Laboratory
- Cited by 2 (0 self) – Add To MetaCart
-
Biologically inspired visual odometer for navigation of a flying robot
- Biologically Inspired Visual Odometer for Navigation of a Flying Robot Fumiya Iida Artificial
- Cited by 3 (1 self) – Add To MetaCart
-
Navigation in an Autonomous Flying Robot by Using a Biologically Inspired Visual Odometer
- Navigation in an autonomous flying robot by using a biologically inspired visual odometer Fumiya
- Cited by 13 (2 self) – Add To MetaCart
-
Design and Control of a Pendulum Driven Hopping Robot
- Design and Control of a Pendulum Driven Hopping Robot Fumiya Iida ChandanaP aul Raja
- Add To MetaCart
-
New robotics: Design principles for intelligent systems
- New Robotics: Design Principles for Intelligent Systems Rolf Pfeifer 1 , Fumiya Iida 1 , Josh
- Cited by 6 (2 self) – Add To MetaCart
-
Control of Lateral Bounding for a Pendulum Driven Hopping Robot
- Control of Lateral Bounding for a Pendulum Driven Hopping Robot CHANDANA PAUL, FUMIYA IIDA, RAJA
- Cited by 3 (2 self) – Add To MetaCart
-
Self-organization, embodiment, and biologically inspired robotics
- Pfeifer, 1 * Max Lungarella, 1 Fumiya Iida 1,2 Robotics researchers increasingly agree that ideas from
- Cited by 2 (0 self) – Add To MetaCart
-
Designing intelligent robots – on the implications of embodiment
- Designing intelligent robots – on the implications of embodiment ROLF PFEIFER, FUMIYA IIDA
- Cited by 2 (0 self) – Add To MetaCart
-
Proceedings of the 32nd ISR(International Symposium on Robotics), 19-21 April 2001
- -Directed Navigation of an Autonomous Flying Robot Using Biologically Inspired Cheap Vision Fumiya Iida AI Lab
- Add To MetaCart
-
Finding resonance: Adaptive frequency oscillators for dynamic legged locomotion
- ∗ , Fumiya Iida † and Auke Jan Ijspeert ∗ ∗ Biologically Inspired Robotics Group, School of Computer
- Cited by 6 (3 self) – Add To MetaCart

