학술논문

Snapp: An Agile Robotic Fish With 3-D Maneuverability for Open Water Swim
Document Type
Periodical
Source
IEEE Robotics and Automation Letters IEEE Robot. Autom. Lett. Robotics and Automation Letters, IEEE. 8(10):6499-6506 Oct, 2023
Subject
Robotics and Control Systems
Computing and Processing
Components, Circuits, Devices and Systems
Tail
Sports
Robots
Synthetic aperture sonar
Shape
Shafts
Propulsion
Bio-inspired robots
biomimetics
robot fish
marine robotics
underactuated control
Language
ISSN
2377-3766
2377-3774
Abstract
Fish exhibit impressive locomotive performance and agility in complex underwater environments, using their undulating tails and pectoral fins for propulsion and maneuverability. Replicating these abilities in robotic fish is challenging; existing designs focus on either fast swimming or directional control at limited speeds, mainly within a confined environment. To address these limitations, we designed Snapp, an integrated robotic fish capable of swimming in open water with high speeds and full 3-dimensional maneuverability. A novel cyclic-differential method is layered on the mechanism. It integrates propulsion and yaw-steering for fast course corrections. Two independent pectoral fins provide pitch and roll control. We evaluated Snapp in open water environments and demonstrated significant improvements in speed and maneuverability, achieving swimming speeds of 1.5 m/s (1.7 body lengths per second) and performing complex maneuvers, such as a figure-8 and S-shape trajectory. Instantaneous yaw changes of 15$^{\circ }$ in 0.4 s, a minimum turn radius of 0.85 m, and maximum pitch and roll rates of 3.5 and 1 rd/s, respectively, were recorded. Our results suggest that Snapp's swimming capabilities have excellent practical prospects for open seas and contribute significantly to developing agile robotic fishes.