SummaryIn order to fully use the advantage of legless body and rhythmic gaits to realize the inspection task, the snake-like robots and dynamic simulators are developed with components available online and open source software. The Serpenoid Curve formula is adopted to generate the joint rhythm of snake-like robot to realize serpentine locomotion. The serpentine locomotion of snake-like robots on land and in water is studied in details with experiments. This work wishes to provide the technical solution for researchers from different institutes to show the performance of the designed algorithm comparing to the other works and for the practical applications of snake-like robots in the near future
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...
Serpentine Locomotion is the most common and simplest locomotion form of a snake-like robot; its mai...
Serpentine Locomotion is the most common and simplest locomotion form of a snake-like robot; its mai...
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...
The snake-like robot has been widely developed in industries because it can move in the different an...
This thesis is motivated by the long-term goal of developing snake robots which can move in unknown ...
This paper describes our work on the studies of the locomotion of a 3D snake-like robot, which has b...
This paper describes our work on the studies of the locomotion of a 3D snake-like robot, which has b...
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...
The diverse locomotion modes and physiology of biological snakes make them supremely adapted for the...
This paper provides an overview of previous literature on snake robot locomotion. In particular, the...
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...
Serpentine Locomotion is the most common and simplest locomotion form of a snake-like robot; its mai...
Serpentine Locomotion is the most common and simplest locomotion form of a snake-like robot; its mai...
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...
The snake-like robot has been widely developed in industries because it can move in the different an...
This thesis is motivated by the long-term goal of developing snake robots which can move in unknown ...
This paper describes our work on the studies of the locomotion of a 3D snake-like robot, which has b...
This paper describes our work on the studies of the locomotion of a 3D snake-like robot, which has b...
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...
The diverse locomotion modes and physiology of biological snakes make them supremely adapted for the...
This paper provides an overview of previous literature on snake robot locomotion. In particular, the...
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...