A Novel Reliability-based Robust Design Multi-objective Optimization Formulation Applied in Chemical Engineering
Gustavo Barbosa Libotte, Fran S\'ergio Lobato, Francisco Duarte, Moura Neto, Gustavo Mendes Platt

TL;DR
This paper introduces a new multi-objective optimization framework that integrates reliability-based and robust design approaches to improve chemical engineering system performance under uncertainty.
Contribution
It develops a flexible formulation combining robustness and reliability considerations into multi-objective optimization for chemical engineering applications.
Findings
The approach effectively handles uncertainties in optimization problems.
It provides diverse feasible solutions through a multi-objective framework.
The formulation is adaptable to different project needs and uncertainty types.
Abstract
Mathematical models simulate various events under different conditions, enabling an early overview of the system to be implemented in practice, reducing the waste of resources and in less time. In project optimization, these models play a fundamental role, allowing to obtain parameters and attributes capable of enhancing product performance, reducing costs and operating time. These enhancements depend on several factors, including an accurate computational modeling of the inherent characteristics of the system. In general, such models include uncertainties in their mathematical formulations, which affect the feasibility of the results and their practical implementation. In this work, two different approaches capable of quantifying uncertainties during the optimization of mathematical models are considered. In the first, robust optimization, the sensitivity of decision variables in…
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Taxonomy
TopicsProcess Optimization and Integration · Risk and Safety Analysis · Advanced Multi-Objective Optimization Algorithms
