ZodiAq: An Isotropic Flagella-Inspired Soft Underwater Drone for Safe Marine Exploration

无人机 水下 海洋工程 软机器人 鞭毛 航空航天工程 工程类 航空学 计算机科学 地质学 人工智能 海洋学 生物 机器人 古生物学 遗传学 细菌
作者
Anup Teejo Mathew,Daniel Feliu-Talegón,Yusuf Abdullahi Adamu,Ikhlas Ben Hmida,Costanza Armanini,Cesare Stefanini,Lakmal Seneviratne,Federico Renda
出处
期刊:Soft robotics [Mary Ann Liebert]
标识
DOI:10.1089/soro.2024.0036
摘要

The inherent challenges of robotic underwater exploration, such as hydrodynamic effects, the complexity of dynamic coupling, and the necessity for sensitive interaction with marine life, call for the adoption of soft robotic approaches in marine exploration. To address this, we present a novel prototype, ZodiAq, a soft underwater drone inspired by prokaryotic bacterial flagella. ZodiAq's unique dodecahedral structure, equipped with 12 flagella-like arms, ensures design redundancy and compliance, ideal for navigating complex underwater terrains. The prototype features a central unit based on a Raspberry Pi, connected to a sensory system for inertial, depth, and vision detection, and an acoustic modem for communication. Combined with the implemented control law, it renders ZodiAq an intelligent system. This article details the design and fabrication process of ZodiAq, highlighting design choices and prototype capabilities. Based on the strain-based modeling of Cosserat rods, we have developed a digital twin of the prototype within a simulation toolbox to simplify analysis and control. To optimize its operation in dynamic aquatic conditions, a simplified model-based controller has been developed and implemented, facilitating intelligent and adaptive movement in the hydrodynamic environment. Extensive experimental demonstrations highlight the drone's potential, showcasing its design redundancy, embodied intelligence, crawling gait, and practical applications in diverse underwater settings. This research contributes significantly to the field of underwater soft robotics, offering a promising new avenue for safe, efficient, and environmentally conscious underwater exploration.

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