Serpentine Locomotion is the most common and simplest locomotion form of a snake-like robot; its main characteristic is the wave-like undulation of the snake's body. In order to realize the noticeable features of the snake-like robot's serpentine locomotion in water, we have developed an amphibious snake-like robot which can adapt to terrestrial and underwater environments. After we derived the dynamic equation for the robot's underwater serpentine locomotion, the simulation based on the dynamic model was made using ADAMS, Finally we presented the influence of the robot's joint angle parameters on the underwater performance of the robot and made experiments to validate the result of ideas and simulations
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...
Biological snakes' diverse locomotion modes and physiology make them supremely adapted for envir...
Serpentine Locomotion is the most common and simplest locomotion form of a snake-like robot; its mai...
Serpentine locomotion of underwater snake-like robot is very complicated. In order to better control...
Serpentine locomotion of underwater snake-like robot is very complicated. In order to better control...
Amphibious snake-like robots are advantageous than traditional snake-like robots for their adaptabil...
Amphibious snake-like robots are advantageous than traditional snake-like robots for their adaptabil...
SummaryIn order to fully use the advantage of legless body and rhythmic gaits to realize the inspect...
This paper presents an amphibious snake-like robot's design and its omnipotent locomotion abilit...
This paper presents an amphibious snake-like robot's design and its omnipotent locomotion abilit...
In this thesis we present a model of a swimming underwater snake robot. How aquatic animals move in...
This thesis is mainly motivated by the attribute of the snake robots that they are able to move over...
The inspiration for snake robots comes from biological snakes. Snakes display superior mobility capa...
This paper presents an analysis of planar underwater snake robot locomotion in the presence of ocean...
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...
Biological snakes' diverse locomotion modes and physiology make them supremely adapted for envir...
Serpentine Locomotion is the most common and simplest locomotion form of a snake-like robot; its mai...
Serpentine locomotion of underwater snake-like robot is very complicated. In order to better control...
Serpentine locomotion of underwater snake-like robot is very complicated. In order to better control...
Amphibious snake-like robots are advantageous than traditional snake-like robots for their adaptabil...
Amphibious snake-like robots are advantageous than traditional snake-like robots for their adaptabil...
SummaryIn order to fully use the advantage of legless body and rhythmic gaits to realize the inspect...
This paper presents an amphibious snake-like robot's design and its omnipotent locomotion abilit...
This paper presents an amphibious snake-like robot's design and its omnipotent locomotion abilit...
In this thesis we present a model of a swimming underwater snake robot. How aquatic animals move in...
This thesis is mainly motivated by the attribute of the snake robots that they are able to move over...
The inspiration for snake robots comes from biological snakes. Snakes display superior mobility capa...
This paper presents an analysis of planar underwater snake robot locomotion in the presence of ocean...
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...
Biological snakes' diverse locomotion modes and physiology make them supremely adapted for envir...