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A multi-objective approach for multi-material topology and shape optimization
Authors:João Batista Queiroz Zuliani  Frederico Gadelha Guimarães  Carlos Alberto Severiano Junior
Affiliation:1. Centro Federal de Educa??o Tecnológica de Minas Gerais, Timóteo, Brazil;2. Department of Electrical Engineering, Universidade Federal de Minas Gerais, Belo Horizonte, Brazil;3. Instituto Federal de Minas Gerais, Campus Sabará, Brazil
Abstract:An automated multi-material approach that integrates multi-objective Topology Optimization (TO) and multi-objective shape optimization is presented. A new ant colony optimization algorithm is presented and applied to solving the TO problem, estimating a trade-off set of initial topologies or distributions of material. The solutions found usually present irregular boundaries, which are not desirable in applications. Thus, shape parameterization of the internal boundaries of the design region, and subsequent shape optimization, is performed to improve the quality of the estimated Pareto-optimal solutions. The selection of solutions for shape optimization is done by using the PROMETHEE II decision-making method. The parameterization process involves identifying the boundaries of different materials and describing these boundaries by non-uniform rational B-spline curves. The proposed approach is applied to the optimization of a C-core magnetic actuator, with two objectives: the maximization of the attractive force on the armature and the minimization of the volume of permanent magnet material.
Keywords:Topology optimization  shape optimization  multi-objective ant colony optimization  multi-objective genetic algorithm  PROMETHEE II
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