Logo

Reliability-based Design Optimization for Structures using Particle Swarm Optimization

Prayogo, Doddy and GABY, GRETEL and WIJAYA, BOBBY HARTANTO and Tjong, Wong Foek and Tjandra, Daniel (2019) Reliability-based Design Optimization for Structures using Particle Swarm Optimization. In: International Conference on Sustainable Infrastructure, 28-10-2019 - 28-10-2019, Yogyakarta - Indonesia.

[img] PDF
Download (558Kb)
    [img] PDF
    Download (2593Kb)
      [img]
      Preview
      PDF (peer review - Daniel Tjandra)
      Download (70Kb) | Preview
        [img]
        Preview
        PDF (Paper - Daniel T)
        Download (3082Kb) | Preview
          [img]
          Preview
          PDF (Cek plagiasi - Daniel T)
          Download (1720Kb) | Preview

            Abstract

            Studies on structure design optimization have been conducted extensively over the past decades because it can increase structural efficiency and maximize the engineers’ profit. One of the significant current discussions is the reliability aspect of structure design in addition to optimal design. This problem becomes more important especially in sizing and shaping optimization of truss structures. To address the problem, this paper applies Reliability-based Design Optimization (RBDO) by combining Latin Hypercube Sampling (LHS) and metaheuristic algorithms which are Particle Swarm Optimization (PSO) and Barebone PSO (BBPSO). The presence of uncertainty is modeled using LHS and the reliability constraint is added to measure the probability of structural failure. This study aims to investigate the performance of these metaheuristic algorithms in optimizing the structure design while still satisfying the reliability constraints. Two case studies, a welded beam design problem and 15-bar planar truss problem, are used in this study. The performance of these two algorithms will be compared. The obtained results indicate that BBPSO has a better performance than PSO.

            Item Type: Conference or Workshop Item (Paper)
            Uncontrolled Keywords: Optimization, PSO variants, Reliability, Truss structure
            Subjects: T Technology > TA Engineering (General). Civil engineering (General)
            Divisions: Faculty of Civil Engineering and Planning > Civil Engineering Department
            Depositing User: Admin
            Date Deposited: 26 Aug 2020 04:50
            Last Modified: 06 Jun 2023 15:56
            URI: https://repository.petra.ac.id/id/eprint/18852

            Actions (login required)

            View Item