A multi-objective DIRECT algorithm for ship hull optimization

The paper is concerned with black-box nonlinear constrained multi-objective optimization problems. Our interest is the definition of a multi-objective deterministic partition-based algorithm. The main target of the proposed algorithm is the solution of a real ship hull optimization problem. To this...

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Vydáno v:Computational optimization and applications Ročník 71; číslo 1; s. 53 - 72
Hlavní autoři: Campana, E. F., Diez, M., Liuzzi, G., Lucidi, S., Pellegrini, R., Piccialli, V., Rinaldi, F., Serani, A.
Médium: Journal Article
Jazyk:angličtina
Vydáno: New York Springer US 01.09.2018
Springer Nature B.V
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ISSN:0926-6003, 1573-2894
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Abstract The paper is concerned with black-box nonlinear constrained multi-objective optimization problems. Our interest is the definition of a multi-objective deterministic partition-based algorithm. The main target of the proposed algorithm is the solution of a real ship hull optimization problem. To this purpose and in pursuit of an efficient method, we develop an hybrid algorithm by coupling a multi-objective DIRECT-type algorithm with an efficient derivative-free local algorithm. The results obtained on a set of “hard” nonlinear constrained multi-objective test problems show viability of the proposed approach. Results on a hull-form optimization of a high-speed catamaran (sailing in head waves in the North Pacific Ocean) are also presented. In order to consider a real ocean environment, stochastic sea state and speed are taken into account. The problem is formulated as a multi-objective optimization aimed at (i) the reduction of the expected value of the mean total resistance in irregular head waves, at variable speed and (ii) the increase of the ship operability, with respect to a set of motion-related constraints. We show that the hybrid method performs well also on this industrial problem.
AbstractList The paper is concerned with black-box nonlinear constrained multi-objective optimization problems. Our interest is the definition of a multi-objective deterministic partition-based algorithm. The main target of the proposed algorithm is the solution of a real ship hull optimization problem. To this purpose and in pursuit of an efficient method, we develop an hybrid algorithm by coupling a multi-objective DIRECT-type algorithm with an efficient derivative-free local algorithm. The results obtained on a set of “hard” nonlinear constrained multi-objective test problems show viability of the proposed approach. Results on a hull-form optimization of a high-speed catamaran (sailing in head waves in the North Pacific Ocean) are also presented. In order to consider a real ocean environment, stochastic sea state and speed are taken into account. The problem is formulated as a multi-objective optimization aimed at (i) the reduction of the expected value of the mean total resistance in irregular head waves, at variable speed and (ii) the increase of the ship operability, with respect to a set of motion-related constraints. We show that the hybrid method performs well also on this industrial problem.
Author Liuzzi, G.
Lucidi, S.
Piccialli, V.
Campana, E. F.
Diez, M.
Pellegrini, R.
Serani, A.
Rinaldi, F.
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  surname: Campana
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  surname: Liuzzi
  fullname: Liuzzi, G.
  email: giampaolo.liuzzi@iasi.cnr.it
  organization: Istituto di Analisi dei Sistemi ed Informatica, Consiglio Nazionale delle Ricerche
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  surname: Lucidi
  fullname: Lucidi, S.
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  surname: Piccialli
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  surname: Rinaldi
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  organization: Dipartimento di Matematica, Università di Padova
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  givenname: A.
  surname: Serani
  fullname: Serani, A.
  organization: Istituto Nazionale per Studi ed Esperienze di Architettura Navale, Consiglio Nazionale delle Ricerche
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Copyright Springer Science+Business Media, LLC 2017
Computational Optimization and Applications is a copyright of Springer, (2017). All Rights Reserved.
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Snippet The paper is concerned with black-box nonlinear constrained multi-objective optimization problems. Our interest is the definition of a multi-objective...
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SubjectTerms Algorithms
Convex and Discrete Geometry
Management Science
Mathematics
Mathematics and Statistics
Multiple objective analysis
Operations Research
Operations Research/Decision Theory
Optimization
Sailing
Ship hulls
Statistics
Viability
Wave resistance
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Title A multi-objective DIRECT algorithm for ship hull optimization
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