Development of an Autonomous Underwater Helicopter with High Maneuverability

Autonomous Underwater Vehicles (AUVs) are the mainstream equipment for underwater scientific research and engineering. However, it remains a great challenge for AUVs to carry out near-seabed operations because of their poor maneuverability. In this paper, a new design for a high-maneuverability disc...

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Main Authors: Zhikun Wang, Xun Liu, Haocai Huang, Ying Chen
Format: Article
Language:English
Published: MDPI AG 2019-09-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/9/19/4072
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spelling doaj-1457145fcad54edc989a91b054a2b3a52020-11-25T01:23:42ZengMDPI AGApplied Sciences2076-34172019-09-01919407210.3390/app9194072app9194072Development of an Autonomous Underwater Helicopter with High ManeuverabilityZhikun Wang0Xun Liu1Haocai Huang2Ying Chen3Ocean College, Zhejiang University, Zhoushan 316021, ChinaOcean College, Zhejiang University, Zhoushan 316021, ChinaOcean College, Zhejiang University, Zhoushan 316021, ChinaOcean College, Zhejiang University, Zhoushan 316021, ChinaAutonomous Underwater Vehicles (AUVs) are the mainstream equipment for underwater scientific research and engineering. However, it remains a great challenge for AUVs to carry out near-seabed operations because of their poor maneuverability. In this paper, a new design for a high-maneuverability disc-shaped AUV is proposed, namely, the Autonomous Underwater Helicopter (AUH). We designed the AUH’s propulsion system through dynamic analysis based on the unique disc shape. The experimental prototype was built by mechatronics technology, after which several motion experiments were carried out to demonstrate the high maneuverability. We find that the prototype has high maneuverability: it can cruise at 0.8 m/s (about 1.5 knots), at least; its turning radius is zero and its turning speed is at least 20 deg/s; and the motion of specific curves in a small range was completed. It is demonstrated that over-actuation is not necessary for the high-maneuverability AUH because of its unique disc shape. A propulsion system consisting of four propellers and a buoyancy adjustment system is used for the highly maneuverable AUH. In addition, the AUH may be a solution for near-seafloor operations.https://www.mdpi.com/2076-3417/9/19/4072autonomous underwater vehicledisc-shapedynamic analysishigh maneuverabilitypropulsion system
collection DOAJ
language English
format Article
sources DOAJ
author Zhikun Wang
Xun Liu
Haocai Huang
Ying Chen
spellingShingle Zhikun Wang
Xun Liu
Haocai Huang
Ying Chen
Development of an Autonomous Underwater Helicopter with High Maneuverability
Applied Sciences
autonomous underwater vehicle
disc-shape
dynamic analysis
high maneuverability
propulsion system
author_facet Zhikun Wang
Xun Liu
Haocai Huang
Ying Chen
author_sort Zhikun Wang
title Development of an Autonomous Underwater Helicopter with High Maneuverability
title_short Development of an Autonomous Underwater Helicopter with High Maneuverability
title_full Development of an Autonomous Underwater Helicopter with High Maneuverability
title_fullStr Development of an Autonomous Underwater Helicopter with High Maneuverability
title_full_unstemmed Development of an Autonomous Underwater Helicopter with High Maneuverability
title_sort development of an autonomous underwater helicopter with high maneuverability
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2019-09-01
description Autonomous Underwater Vehicles (AUVs) are the mainstream equipment for underwater scientific research and engineering. However, it remains a great challenge for AUVs to carry out near-seabed operations because of their poor maneuverability. In this paper, a new design for a high-maneuverability disc-shaped AUV is proposed, namely, the Autonomous Underwater Helicopter (AUH). We designed the AUH’s propulsion system through dynamic analysis based on the unique disc shape. The experimental prototype was built by mechatronics technology, after which several motion experiments were carried out to demonstrate the high maneuverability. We find that the prototype has high maneuverability: it can cruise at 0.8 m/s (about 1.5 knots), at least; its turning radius is zero and its turning speed is at least 20 deg/s; and the motion of specific curves in a small range was completed. It is demonstrated that over-actuation is not necessary for the high-maneuverability AUH because of its unique disc shape. A propulsion system consisting of four propellers and a buoyancy adjustment system is used for the highly maneuverable AUH. In addition, the AUH may be a solution for near-seafloor operations.
topic autonomous underwater vehicle
disc-shape
dynamic analysis
high maneuverability
propulsion system
url https://www.mdpi.com/2076-3417/9/19/4072
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AT haocaihuang developmentofanautonomousunderwaterhelicopterwithhighmaneuverability
AT yingchen developmentofanautonomousunderwaterhelicopterwithhighmaneuverability
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