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FEMtools OptimizationAn Integrated Solution for Structural Design Optimization FEMtools Optimization is a toolbox for solving general optimization problems and more specifically for structural design optimization. In combination with FEMtools Model Updating, it provides the unique possibility to perform design optimization on validated and updated finite element models. Based on the acting loads, the design constraints, and the required structural behavior, FEMtools Optimization computes the optimal design parameters for the considered component or structure. The state-of-the-art optimization techniques of FEMtools Optimization enable to increase the performance of the considered component considerably faster than conventional development methods. FEMtools Optimization has an open architecture providing virtually unlimited flexibility in the problem definition and offering the possibility to solve the optimization problem using your preferred FE-solver. FEMtools Optimization contains functions for:
Sensitivity AnalysisSensitivity analysis is a technique that allows an analyst to get a feeling on how structural responses of a model are influenced by modifications of parameters like spring stiffness, material stiffness, geometry etc. For more information, see FEMtools Model Updating. General Non-Linear OptimizationAny arbitrary objective or constraint function can be used for optimization by programming it using the FEMtools Script language. There are no fixed limits on the number of optimization parameters, objective functions or constraints. FEMtools Optimization is build around a powerful general non-linear optimization solver the can handle the following types of optimization problems:
Size OptimizationSize optimization allows optimizing the properties of designable elements like bars, plates, etc. The FEMtools size optimization tool offers the following features:
Shape OptimizationThe shape optimization module optimizes the shape of an existing component. The FEMtools shape optimization tool offers the following features:
Three methods are available to deform the mesh of the FE-model:
Topometry OptimizationTopometry optimization enables element-by-element size optimization of FE-models. The FEMtools topometry optimization tool provides a solution for the following design problems:
The following filters are available:
The following constraints are available to improve the manufacturability of the optimal design:
Topology OptimizationThe FEMtools topology optimization tool provides a solution for the following 2D and 3D design problems:
The following filters are available:
The following constraints are available to improve the manufacturability of the optimal design:
Design of Experiments and Response Surface ModelingDesign of experiment (DOE) techniques aim at sampling the design space in an efficient way with a minimum number of sampling points, as the evaluation of each sampling point requires an additional run of the FE-model. FEMtools provides the following designs: factorial designs, central composite designs, Latin hypercube designs, D-optimal designs, and user-defined designs. Response Surface Modeling (RSM) is used to build an approximate model from the DOE runs to predict the response of the system in function of the design parameters. This approximate model can then be used to optimize the response of the considered system instead of the finite element model of which it was derived. User Interface
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