Local optimization of thruster configuration based on a synthesized positioning capability criterion

DPCap analysis can assist in determining the maximum environmental forces the DP system can counteract for a given heading. DPCap analysis results are highly affected by the thrust forces provided by the thrust system which consists of several kinds of thrusters. The thrust forces and moment are det...

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Main Authors: Shengwen Xu, Lei Wang, Xuefeng Wang
Format: Article
Language:English
Published: Elsevier 2015-11-01
Series:International Journal of Naval Architecture and Ocean Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2092678216300152
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spelling doaj-833e17abd1594b43a1e6f776c55545a72020-11-25T02:15:45ZengElsevierInternational Journal of Naval Architecture and Ocean Engineering2092-67822015-11-01761044105510.1515/ijnaoe-2015-0073ijnaoe-2015-0073Local optimization of thruster configuration based on a synthesized positioning capability criterionShengwen XuLei WangXuefeng WangDPCap analysis can assist in determining the maximum environmental forces the DP system can counteract for a given heading. DPCap analysis results are highly affected by the thrust forces provided by the thrust system which consists of several kinds of thrusters. The thrust forces and moment are determined by the maximum thrust of the thrusters as well as the thruster configuration. In this paper, a novel local optimization of thruster configuration based on a synthesized positioning capability criterion is proposed. The combination of the discrete locations of the thrusters forms the thruster configuration and is the input, and the synthesized positioning capability is the output. The quantified synthesized positioning capability of the corresponding thruster configuration can be generated as the output. The optimal thruster configuration is the one which makes the vessel has the best positioning capability. A software program was developed based on the present study. A local optimization of thruster configuration for a supply vessel was performed to demonstrate the effectiveness and efficiency of the program. Even though the program cannot find the global optimal thruster configuration, its high efficiency makes it essentially practical in an engineering point. It may be used as a marine research tool and give guidance to the designer of the thrust system.http://www.sciencedirect.com/science/article/pii/S2092678216300152DPCapSynthesized positioning capabilityLocal optimization of thruster configuration
collection DOAJ
language English
format Article
sources DOAJ
author Shengwen Xu
Lei Wang
Xuefeng Wang
spellingShingle Shengwen Xu
Lei Wang
Xuefeng Wang
Local optimization of thruster configuration based on a synthesized positioning capability criterion
International Journal of Naval Architecture and Ocean Engineering
DPCap
Synthesized positioning capability
Local optimization of thruster configuration
author_facet Shengwen Xu
Lei Wang
Xuefeng Wang
author_sort Shengwen Xu
title Local optimization of thruster configuration based on a synthesized positioning capability criterion
title_short Local optimization of thruster configuration based on a synthesized positioning capability criterion
title_full Local optimization of thruster configuration based on a synthesized positioning capability criterion
title_fullStr Local optimization of thruster configuration based on a synthesized positioning capability criterion
title_full_unstemmed Local optimization of thruster configuration based on a synthesized positioning capability criterion
title_sort local optimization of thruster configuration based on a synthesized positioning capability criterion
publisher Elsevier
series International Journal of Naval Architecture and Ocean Engineering
issn 2092-6782
publishDate 2015-11-01
description DPCap analysis can assist in determining the maximum environmental forces the DP system can counteract for a given heading. DPCap analysis results are highly affected by the thrust forces provided by the thrust system which consists of several kinds of thrusters. The thrust forces and moment are determined by the maximum thrust of the thrusters as well as the thruster configuration. In this paper, a novel local optimization of thruster configuration based on a synthesized positioning capability criterion is proposed. The combination of the discrete locations of the thrusters forms the thruster configuration and is the input, and the synthesized positioning capability is the output. The quantified synthesized positioning capability of the corresponding thruster configuration can be generated as the output. The optimal thruster configuration is the one which makes the vessel has the best positioning capability. A software program was developed based on the present study. A local optimization of thruster configuration for a supply vessel was performed to demonstrate the effectiveness and efficiency of the program. Even though the program cannot find the global optimal thruster configuration, its high efficiency makes it essentially practical in an engineering point. It may be used as a marine research tool and give guidance to the designer of the thrust system.
topic DPCap
Synthesized positioning capability
Local optimization of thruster configuration
url http://www.sciencedirect.com/science/article/pii/S2092678216300152
work_keys_str_mv AT shengwenxu localoptimizationofthrusterconfigurationbasedonasynthesizedpositioningcapabilitycriterion
AT leiwang localoptimizationofthrusterconfigurationbasedonasynthesizedpositioningcapabilitycriterion
AT xuefengwang localoptimizationofthrusterconfigurationbasedonasynthesizedpositioningcapabilitycriterion
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