The performance of bluespotted rays was emulated in the design of a bioinspired underwater propulsor in the present work. First, the movement of a live bluespotted ray was captured for the swimming mode and useful information to the biomimetic mechanism design. By virtue of the modular and reconfigurable design concept, an undulatory fin propulsion prototype was developed. With a proper experimental set-up, orthogonal experiments were conducted to investigate the effect of various fin design parameters on the propulsion speed, thrust, and power of the fish robot. The controllable fin parameters include frequency, amplitude, wavelength, fin shape, and undulatory mode. The significance of these parameters was also determined by using the vari...
Abstract—Fish are remarkable in their ability to maneuver and to control their body position. This a...
Biomimetics aims to take inspiration from nature and develop new models and efficient systems for a ...
This paper presents the design and construction of a biomimetic swimming robot inspired by the locom...
The performance of bluespotted rays was emulated in the design of a bioinspired underwater propulsor...
Biomimetics takes nature as a model for inspiration to immensely help abstract new principles and id...
Interest in autonomous underwater vehicles is constantly increasing following the emerging needs of ...
Bionic propulsion has certain advantages over traditional propellers. Much research on pectoral fins...
One field in which nature outperforms current technology is fish swimming, because its efficiency, m...
In this paper, we propose a novel propulsion method for a Biomimetic underwater robot, which is a bi...
Bio-inspiration can lead to a significant improvement in propulsive efficiency and maneuverability o...
We propose a novel propulsion mechanism for an underwater robot inspired by the pectoral fins of a f...
The study of fish swimming is of great interest for engineers and researchers because the investigat...
This paper shows the design of an underwater autonomous robot. The challenges of this activity are m...
This paper presents an experimental study on the structural and motion parameters of a biomimetic me...
Abstract—Fish are remarkable in their ability to maneuver and to control their body position. This a...
Biomimetics aims to take inspiration from nature and develop new models and efficient systems for a ...
This paper presents the design and construction of a biomimetic swimming robot inspired by the locom...
The performance of bluespotted rays was emulated in the design of a bioinspired underwater propulsor...
Biomimetics takes nature as a model for inspiration to immensely help abstract new principles and id...
Interest in autonomous underwater vehicles is constantly increasing following the emerging needs of ...
Bionic propulsion has certain advantages over traditional propellers. Much research on pectoral fins...
One field in which nature outperforms current technology is fish swimming, because its efficiency, m...
In this paper, we propose a novel propulsion method for a Biomimetic underwater robot, which is a bi...
Bio-inspiration can lead to a significant improvement in propulsive efficiency and maneuverability o...
We propose a novel propulsion mechanism for an underwater robot inspired by the pectoral fins of a f...
The study of fish swimming is of great interest for engineers and researchers because the investigat...
This paper shows the design of an underwater autonomous robot. The challenges of this activity are m...
This paper presents an experimental study on the structural and motion parameters of a biomimetic me...
Abstract—Fish are remarkable in their ability to maneuver and to control their body position. This a...
Biomimetics aims to take inspiration from nature and develop new models and efficient systems for a ...
This paper presents the design and construction of a biomimetic swimming robot inspired by the locom...