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Stroke Synchronization of Underwater Modular Robot through Physical Interaction

Kohei Nishikawa, Yuki Origane, Daisuke Kurabayashi

Year
2023
Citations
1

Abstract

Modular robots are expected to be used in extreme environments owing to their adaptability, and various modular robots have been developed. Most studies have focused on the expandability of capabilities or the integration of modules, whereas only a few studies have investigated autonomous decentralized control, in which each module harmonizes its own movements for overall functionality. We developed an underwater modular robot that synchronizes its paddle strokes; the robot is based on the motif of Gonium, a multicellular alga. We built a reduced system model of modules to represent the state of an oscillator by using a phase with attractive interactions with others. Because the model is similar to the Kuramoto model, we applied analysis methods. Real robotic modules were built, and experiments were conducted using a colony of the modules. The experimental results confirmed that the colony exhibited stroke synchronization ability by compensating for individual differences. The stroke synchronization is expected to stabilize the movements of robot colonies and improve their overall propulsion.

Keywords

Modular designRobotSynchronization (alternating current)AdaptabilitySelf-reconfiguring modular robotComputer scienceUnderwaterPropulsionMulticellular organismControl engineering

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