Hiroki Nozaki
Papers
2
Total Citations
24
H-Index
2
About
Hiroki Nozaki is a pioneering roboticist whose work redefines locomotion for deformable, multi-legged systems. His research centers on shape-changing robotics and bio-inspired, non-animalistic locomotion strategies, with a particular focus on achieving omni-directional, continuous movement over uncertain terrain. Nozaki’s major contribution is the development of free-form, continuous crawling for spherical and spiny multi-pedal robots—a departure from traditional discontinuous rolling. His 2018 paper on a 32-legged spherical robot (15 citations) introduces a paradigm shift, enabling robots to adapt their shape for seamless, omnidirectional traversal. In his 2017 work (9 citations), he further advanced the field by creating a spiny, multi-pedal robot with a novel telescopic slide actuator, achieving a remarkable 250% stroke-to-minimum-length ratio. This innovation allows for unprecedented leg extension and terrain adaptability. Nozaki’s geometric, rather than purely animal-inspired, framework for locomotion has opened new avenues for robotic mobility in challenging environments, making his work essential reading for researchers in soft robotics, adaptive locomotion, and field robotics.
Research Focus
Key Achievements
Top Papers
- 1Continuous Shape Changing Locomotion of 32-legged Spherical Robot15 citations · 2018
- 2Shape changing locomotion by spiny multipedal robot9 citations · 2017