UNIVPM BRAVe: A Hybrid Propulsion Underwater Research Vehicle

Author:

Scaradozzi David, ,Palmieri Giacomo,Costa Daniele,Zingaretti Silvia,Panebianco Luca,Ciuccoli Nicolò,Pinelli Antonio,Callegari Massimo, ,

Abstract

In the last decade, the underwater activities performed by archaeologists and biologists have benefited from scientific research on the guidance, control, and sensory systems of unmanned vehicles. In fact, because underwater sites of interest are often difficult for divers to access, the use of unmanned vehicle technology to conduct surveys could be quite advantageous. In this paper, a novel and partially-biomimetic underwater robot, referred to as BRAVe (Biomimetic Research Autonomous Vehicle), is presented. For documentation purposes, it is equipped with a hybrid propulsion system, which consists of two different types of thrusters. The thrusters are designed to compensate for their reciprocal flaws in order to achieve a more efficient overall system. Specifically, the biomimetic thruster is employed for its superior energetic efficiency, and the horizontal propellers are exploited for accurate maneuvering. While the documentation and 3D reconstruction of the underwater seabed is a consolidated aspect for the authors, the hybrid propulsion system represents the main innovation of the present work. The increase in efficiency achieved by this propulsion system allows the vehicle to perform a thorough and precise documentation of underwater remains within short distances, while exploiting the maximum possible autonomy. This article discusses the details of the development of all the vehicle compartments and their associated characteristics, focusing on the significance of this technology. In addition, the results of 3D reconstructions extrapolated from images taken during real field missions are presented.

Publisher

Fuji Technology Press Ltd.

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Review of low cost micro remotely operated underwater vehicle;Ocean Engineering;2022-12

2. Design and Control of an Underwater Robot Based on Hybrid Propulsion of Quadrotor and Bionic Undulating Fin;Journal of Marine Science and Engineering;2022-09-19

3. Performance Evaluation of a Hybrid Thruster for Spherical Underwater Robots;IEEE Transactions on Instrumentation and Measurement;2022

4. Motion Stability Evaluation of the Improved Spherical Underwater Robot with Hybrid Propulsion Devices;2021 IEEE International Conference on Mechatronics and Automation (ICMA);2021-08-08

5. Experimental Validation of a Bio-Inspired Thruster;Journal of Dynamic Systems, Measurement, and Control;2021-03-19

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