Publication | Open Access
Reliability-Based Design Optimization of a Superconducting Magnetic Energy Storage System (SMES) Utilizing Reliability Index Approach
16
Citations
6
References
2012
Year
EngineeringSystem ReliabilityStructural OptimizationReliability-based Design OptimizationElectromagnetic CompatibilityMagnetismReliability EngineeringUncertainty QuantificationSystems EngineeringComputational ElectromagneticsConfidence LevelReliabilityElectrical EngineeringFirstorder Reliability MethodHardware ReliabilityOptimal DesignEnergy StorageStructural ReliabilityReliability PredictionReliability ModellingEnergy ManagementPower System ReliabilityReliability Management
A reliability-based optimization method for electromagnetic design is presented to take uncertainties of design parameters into account. The method can provide an optimal design satisfying a specified confidence level in the presence of uncertain parameters. To achieve the goal, the reliability index approach based on the firstorder reliability method is adopted to deal with probabilistic constraint functions and a double-loop optimization algorithm is implemented to obtain an optimum. The proposed method is applied to the TEAM Workshop Problem 22 and its accuracy and efficiency is verified with reference of Monte Carlo simulation results.
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