Publication | Closed Access
Robust shape optimization of electromechanical devices
28
Citations
12
References
1999
Year
Finite Element MethodEngineeringSoft RoboticsRobust Shape OptimizationMechanical EngineeringMechatronicsMechanical SystemsShape OptimizationSystems EngineeringComputer-aided DesignElectronic-mechanical SystemStructural OptimizationComputational MechanicsNonlinear OptimizationRobust Optimization ProblemRobust OptimizationEquipment DesignTopology Optimization
This paper presents the robust shape optimization of electromechanical devices considering the uncertainties of design variables based on numerical optimization technique and finite element method (FEM). In the formulation of robust optimization, the multiobjective function is composed of the mean and the standard deviation of original objective function, while the constraints are supplemented by adding a penalty term to the original constraints. The sequential quadratic programming (SQP) is applied to solve the robust optimization problem. The results of robust shape optimization considering manufacturing errors are compared with those of conventional shape optimization.
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