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Main Authors: Zhang, Lianxin, Ji, Xiaoqiang, Jiao, Yang, Huang, Yihan, Qian, Huihuan
Format: Preprint
Published: 2022
Subjects:
Online Access:https://arxiv.org/abs/2212.03639
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author Zhang, Lianxin
Ji, Xiaoqiang
Jiao, Yang
Huang, Yihan
Qian, Huihuan
author_facet Zhang, Lianxin
Ji, Xiaoqiang
Jiao, Yang
Huang, Yihan
Qian, Huihuan
contents This paper presents the TransBoat, a novel omnidirectional unmanned surface vehicle (USV) with a magnetbased docking system for overwater construction with wave disturbances. This is the first such USV that can build overwater structures by transporting modules. The TransBoat incorporates two features designed to reject wave disturbances. First, the TransBoat's expandable body structure can actively transform from a mono-hull into a multi-hull for stabilization in turbulent environments by extending its four outrigger hulls. Second, a real-time nonlinear model predictive control (NMPC) scheme is proposed for all shapes of the TransBoat to enhance its maneuverability and resist disturbance to its movement, based on a nonlinear dynamic model. An experimental approach is proposed to identify the parameters of the dynamic model, and a subsequent trajectory tracking test validates the dynamics, NMPC controller and system mobility. Further, docking experiments identify improved performance in the expanded form of the TransBoat compared with the contracted form, including an increased success rate (of ~ 10%) and reduced docking time (of ~ 40 s on average). Finally, a bridge construction test verifies our system design and the NMPC control method.
format Preprint
id arxiv_https___arxiv_org_abs_2212_03639
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Design and Control of the "TransBoat": A Transformable Unmanned Surface Vehicle for Overwater Construction
Zhang, Lianxin
Ji, Xiaoqiang
Jiao, Yang
Huang, Yihan
Qian, Huihuan
Robotics
This paper presents the TransBoat, a novel omnidirectional unmanned surface vehicle (USV) with a magnetbased docking system for overwater construction with wave disturbances. This is the first such USV that can build overwater structures by transporting modules. The TransBoat incorporates two features designed to reject wave disturbances. First, the TransBoat's expandable body structure can actively transform from a mono-hull into a multi-hull for stabilization in turbulent environments by extending its four outrigger hulls. Second, a real-time nonlinear model predictive control (NMPC) scheme is proposed for all shapes of the TransBoat to enhance its maneuverability and resist disturbance to its movement, based on a nonlinear dynamic model. An experimental approach is proposed to identify the parameters of the dynamic model, and a subsequent trajectory tracking test validates the dynamics, NMPC controller and system mobility. Further, docking experiments identify improved performance in the expanded form of the TransBoat compared with the contracted form, including an increased success rate (of ~ 10%) and reduced docking time (of ~ 40 s on average). Finally, a bridge construction test verifies our system design and the NMPC control method.
title Design and Control of the "TransBoat": A Transformable Unmanned Surface Vehicle for Overwater Construction
topic Robotics
url https://arxiv.org/abs/2212.03639