Validation of 4DOF maneuvering coefficients optimization using hydrodynamic force and moment estimated from free-running model test results

The present study concerns validation of data-driven modeling for ship dynamics from free-running model test results, in terms of estimation of hydrodynamic force and moment, maneuvering coefficients, and maneuver simulation results. An estimation method for the hydrodynamic force and moment from th...

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Main Authors: Kiwon Kim, Sungeun Choi, Jeonghwa Seo, Ki-In Na, Shin Hyung Rhee, Dong-Hwan Kim
Format: Article
Language:English
Published: Elsevier 2024-01-01
Series:International Journal of Naval Architecture and Ocean Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2092678224000189
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author Kiwon Kim
Sungeun Choi
Jeonghwa Seo
Ki-In Na
Shin Hyung Rhee
Dong-Hwan Kim
author_facet Kiwon Kim
Sungeun Choi
Jeonghwa Seo
Ki-In Na
Shin Hyung Rhee
Dong-Hwan Kim
author_sort Kiwon Kim
collection DOAJ
description The present study concerns validation of data-driven modeling for ship dynamics from free-running model test results, in terms of estimation of hydrodynamic force and moment, maneuvering coefficients, and maneuver simulation results. An estimation method for the hydrodynamic force and moment from the acceleration of a surface combatant model ship is suggested and compared with the conventional ship dynamics modeling. The hull dynamics modeling relates the motion and hydrodynamic force and moment is developed by optimizing maneuvering coefficients which leads to minimum loss function of hydrodynamic force and moment and maneuvering criteria. The maneuvering coefficients of the dynamics model is compared with a conventional system-based dynamics model. Lastly, the maneuvering simulation results are compared to the free-running model test results. The suggested model adequately predicts hydrodynamic force and moment in highly coupled sway and yaw motion.
format Article
id doaj-art-d4099bc8eaa849c89b563a4d4215098f
institution Kabale University
issn 2092-6782
language English
publishDate 2024-01-01
publisher Elsevier
record_format Article
series International Journal of Naval Architecture and Ocean Engineering
spelling doaj-art-d4099bc8eaa849c89b563a4d4215098f2024-12-25T04:21:08ZengElsevierInternational Journal of Naval Architecture and Ocean Engineering2092-67822024-01-0116100599Validation of 4DOF maneuvering coefficients optimization using hydrodynamic force and moment estimated from free-running model test resultsKiwon Kim0Sungeun Choi1Jeonghwa Seo2Ki-In Na3Shin Hyung Rhee4Dong-Hwan Kim5Hanwha Systems Co., Ltd. Gumi, Republic of KoreaAgency for Defense Development, Daejeon, Republic of KoreaDepartment of Autonomous Vehicle System Engineering, Chungnam National University, Daejeon, Republic of Korea; Corresponding author.Electronics and Telecommunications Research Institute, Daejeon, Republic of KoreaDepartment of Naval Architecture and Ocean Engineering, Seoul National University, Seoul, Republic of Korea; Research Institute of Marine Systems Engineering, Seoul National University, Seoul, Republic of KoreaInstitue of Advanced Transportation Vehicles, Chungnam National University, Daejeon, Republic of KoreaThe present study concerns validation of data-driven modeling for ship dynamics from free-running model test results, in terms of estimation of hydrodynamic force and moment, maneuvering coefficients, and maneuver simulation results. An estimation method for the hydrodynamic force and moment from the acceleration of a surface combatant model ship is suggested and compared with the conventional ship dynamics modeling. The hull dynamics modeling relates the motion and hydrodynamic force and moment is developed by optimizing maneuvering coefficients which leads to minimum loss function of hydrodynamic force and moment and maneuvering criteria. The maneuvering coefficients of the dynamics model is compared with a conventional system-based dynamics model. Lastly, the maneuvering simulation results are compared to the free-running model test results. The suggested model adequately predicts hydrodynamic force and moment in highly coupled sway and yaw motion.http://www.sciencedirect.com/science/article/pii/S2092678224000189Mathematical maneuvering modelFree-running model testShip maneuverability
spellingShingle Kiwon Kim
Sungeun Choi
Jeonghwa Seo
Ki-In Na
Shin Hyung Rhee
Dong-Hwan Kim
Validation of 4DOF maneuvering coefficients optimization using hydrodynamic force and moment estimated from free-running model test results
International Journal of Naval Architecture and Ocean Engineering
Mathematical maneuvering model
Free-running model test
Ship maneuverability
title Validation of 4DOF maneuvering coefficients optimization using hydrodynamic force and moment estimated from free-running model test results
title_full Validation of 4DOF maneuvering coefficients optimization using hydrodynamic force and moment estimated from free-running model test results
title_fullStr Validation of 4DOF maneuvering coefficients optimization using hydrodynamic force and moment estimated from free-running model test results
title_full_unstemmed Validation of 4DOF maneuvering coefficients optimization using hydrodynamic force and moment estimated from free-running model test results
title_short Validation of 4DOF maneuvering coefficients optimization using hydrodynamic force and moment estimated from free-running model test results
title_sort validation of 4dof maneuvering coefficients optimization using hydrodynamic force and moment estimated from free running model test results
topic Mathematical maneuvering model
Free-running model test
Ship maneuverability
url http://www.sciencedirect.com/science/article/pii/S2092678224000189
work_keys_str_mv AT kiwonkim validationof4dofmaneuveringcoefficientsoptimizationusinghydrodynamicforceandmomentestimatedfromfreerunningmodeltestresults
AT sungeunchoi validationof4dofmaneuveringcoefficientsoptimizationusinghydrodynamicforceandmomentestimatedfromfreerunningmodeltestresults
AT jeonghwaseo validationof4dofmaneuveringcoefficientsoptimizationusinghydrodynamicforceandmomentestimatedfromfreerunningmodeltestresults
AT kiinna validationof4dofmaneuveringcoefficientsoptimizationusinghydrodynamicforceandmomentestimatedfromfreerunningmodeltestresults
AT shinhyungrhee validationof4dofmaneuveringcoefficientsoptimizationusinghydrodynamicforceandmomentestimatedfromfreerunningmodeltestresults
AT donghwankim validationof4dofmaneuveringcoefficientsoptimizationusinghydrodynamicforceandmomentestimatedfromfreerunningmodeltestresults