Designing a robotic fish is a challenging endeavor due to the non-linear dynamics of underwater environments. In this paper, we present an evolutionary computation approach for designing the caudal fin of a carangiform robotic fish. Evolutionary experiments are performed in a simulated environment utilizing a mathematical model to approximate the hydrodynamic motion of a flexible caudal fin. With this model, time-consuming computational fluid dynamic simulations can be avoided while maintaining a physically realistic simulation. Two approaches are employed to maximize a robotic fish\u27s average velocity. First, a hill-climbing algorithm is applied to find the optimal stiffness for a fixed shape caudal fin. Next, both fin stiffness and shap...
Fishes have evolved different excellent swimming strategies. To study the influence of tail fin swin...
This paper presents a three-dimensional, dynamic model of robotic fish which synthesizes both the ca...
Bio-inspired solutions devised for Autonomous Underwater Robots are currently investigated by resear...
Robotic fish accomplish swimming by deforming their bodies or other fin-like appendages. As an emerg...
In this paper, we apply evolutionary multiobjective optimization to the design of a robotic fish wit...
A fish robot with image sensors is useful to research for underwater creatures such as fish. However...
This paper presents a dynamic model of robotic fish which synthesizes both the carangiform and angui...
We designed a robotic fish caudal fin with six individually moveable fin rays based on the tail of t...
This paper presents a dynamic model of robotic fish which synthesizes both the carangiform and angui...
Imitating the style of the motion of fish mail in nature, this paper design and develop a single joi...
Propulsion and manoeuvring ability are parts of the most common and complicated mechanisms in nature...
In this paper, the propulsive performance of a caudal peduncle-fin swimmer mimicking a bio-inspired ...
The study of biomimetics is largely driven by the desire to integrate design advantages found in th...
<p>This paper presents a robot fish with a wire-driven caudal fin and a pair of pectoral fins. First...
As a result of years of research on the comparative biomechanics and physiology of moving through wa...
Fishes have evolved different excellent swimming strategies. To study the influence of tail fin swin...
This paper presents a three-dimensional, dynamic model of robotic fish which synthesizes both the ca...
Bio-inspired solutions devised for Autonomous Underwater Robots are currently investigated by resear...
Robotic fish accomplish swimming by deforming their bodies or other fin-like appendages. As an emerg...
In this paper, we apply evolutionary multiobjective optimization to the design of a robotic fish wit...
A fish robot with image sensors is useful to research for underwater creatures such as fish. However...
This paper presents a dynamic model of robotic fish which synthesizes both the carangiform and angui...
We designed a robotic fish caudal fin with six individually moveable fin rays based on the tail of t...
This paper presents a dynamic model of robotic fish which synthesizes both the carangiform and angui...
Imitating the style of the motion of fish mail in nature, this paper design and develop a single joi...
Propulsion and manoeuvring ability are parts of the most common and complicated mechanisms in nature...
In this paper, the propulsive performance of a caudal peduncle-fin swimmer mimicking a bio-inspired ...
The study of biomimetics is largely driven by the desire to integrate design advantages found in th...
<p>This paper presents a robot fish with a wire-driven caudal fin and a pair of pectoral fins. First...
As a result of years of research on the comparative biomechanics and physiology of moving through wa...
Fishes have evolved different excellent swimming strategies. To study the influence of tail fin swin...
This paper presents a three-dimensional, dynamic model of robotic fish which synthesizes both the ca...
Bio-inspired solutions devised for Autonomous Underwater Robots are currently investigated by resear...