Biological snakes' diverse locomotion modes and physiology make them supremely adapted for the environment. The special structure of snakes and their unique movement offer them peculiar ability of climbing and moving even in some ill-conditioned environments, such as on the marshland or in narrow tubes. Using these snakes' noticeable features in robots is becoming more important for generating a new type of locomotor and expanding the function of robots. We introduce a 12-link snake-like robot, which is moved through the difference between normal and tangential friction. The propelling force of our robot is generated only by swinging its joints from side to side
The diverse locomotion modes and physiology of biological snakes make them supremely adapted for the...
The diverse locomotion modes and physiology of biological snakes make them supremely adapted for the...
As a hyper-redundant robot, a 3D snake-like robot can perform many other configurations and types of...
Biological snakes' diverse locomotion modes and physiology make them supremely adapted for the e...
Biological snakes' diverse locomotion modes and physiology make them supremely adapted for the g...
Biological snakes' diverse locomotion modes and physiology make them supremely adapted for the g...
Biological snakes' diverse locomotion modes and physiology make them supremely adapted for envir...
Biological snakes' diverse locomotion modes and physiology make them supremely adapted for the g...
Biological snakes' diverse locomotion modes and physiology make them supremely adapted for the g...
The inspiration for snake robots comes from biological snakes. Snakes display superior mobility capa...
A snake changes its gait to adapt to different environments. A snake-like robot that is able to perf...
Robots that mimic the natural motions of animals have long been of interest in science and engineeri...
A snake changes its gait to adapt to different environments. A snake-like robot that is able to perf...
Snakes perform many kinds of movement that are adaptable to the environment. Utilizing the snake (it...
Snakes perform many kinds of movement that are adaptable to the environment. Utilizing the snake (it...
The diverse locomotion modes and physiology of biological snakes make them supremely adapted for the...
The diverse locomotion modes and physiology of biological snakes make them supremely adapted for the...
As a hyper-redundant robot, a 3D snake-like robot can perform many other configurations and types of...
Biological snakes' diverse locomotion modes and physiology make them supremely adapted for the e...
Biological snakes' diverse locomotion modes and physiology make them supremely adapted for the g...
Biological snakes' diverse locomotion modes and physiology make them supremely adapted for the g...
Biological snakes' diverse locomotion modes and physiology make them supremely adapted for envir...
Biological snakes' diverse locomotion modes and physiology make them supremely adapted for the g...
Biological snakes' diverse locomotion modes and physiology make them supremely adapted for the g...
The inspiration for snake robots comes from biological snakes. Snakes display superior mobility capa...
A snake changes its gait to adapt to different environments. A snake-like robot that is able to perf...
Robots that mimic the natural motions of animals have long been of interest in science and engineeri...
A snake changes its gait to adapt to different environments. A snake-like robot that is able to perf...
Snakes perform many kinds of movement that are adaptable to the environment. Utilizing the snake (it...
Snakes perform many kinds of movement that are adaptable to the environment. Utilizing the snake (it...
The diverse locomotion modes and physiology of biological snakes make them supremely adapted for the...
The diverse locomotion modes and physiology of biological snakes make them supremely adapted for the...
As a hyper-redundant robot, a 3D snake-like robot can perform many other configurations and types of...