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Structural Design of a Bionic Jellyfish Multi-degree-of-Freedom Paddling Mechanism Driven Underwater Robot

  • Beihang University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

The bionic jellyfish robot utilizes the biological properties and advantages of jellyfish to achieve exceptional performance underwater. This paper proposes a multi-degree-of-freedom paddle drive underwater bionic robot inspired by the winged bell jellyfish. The robot utilizes a paddle drive to mechanically connect wires and tighten the jellyfish tentacles, providing sufficient underwater propulsion for the robot’s movement. The actuator of the jellyfish robot features orthogonal gears. This design provides two degrees of freedom for each tentacle, effectively solving the issue of poor controllability in underwater robot. The propulsion mechanism of the bionic robot can be determined through the analysis of the thrust generated by the jellyfish robot. The driving effect of the bionic robot can be achieved by adjusting its different degrees of freedom. Furthermore, the motion effect of the jellyfish robot actuator can be obtained by modelling the paddle drive using simulation methods. Experimental results shows that the robot’s drive mode reproduces the jellyfish’s bionic motion characteristics. The jellyfish robot proposed in this paper exhibits good movement ability and can perform complex actions.

Original languageEnglish
Title of host publicationAdvances in Guidance, Navigation and Control - Proceedings of 2024 International Conference on Guidance, Navigation and Control Volume 16
EditorsLiang Yan, Haibin Duan, Yimin Deng
PublisherSpringer Science and Business Media Deutschland GmbH
Pages335-344
Number of pages10
ISBN (Print)9789819622597
DOIs
StatePublished - 2025
EventInternational Conference on Guidance, Navigation and Control, ICGNC 2024 - Changsha, China
Duration: 9 Aug 202411 Aug 2024

Publication series

NameLecture Notes in Electrical Engineering
Volume1352 LNEE
ISSN (Print)1876-1100
ISSN (Electronic)1876-1119

Conference

ConferenceInternational Conference on Guidance, Navigation and Control, ICGNC 2024
Country/TerritoryChina
CityChangsha
Period9/08/2411/08/24

Keywords

  • Actuator Dynamical Model
  • Bionic Drive
  • Robotic Jellyfish

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