IEEE Transactions on Industry Applications · 2017 · 19 citations · 12 references
Numerical AnalysisReduced Order ModelingIndustrial ElectronicsEngineeringElectric MachineMechatronicsMechanical SystemsProcess ControlProper Orthogonal DecompositionSystems EngineeringElectric MachinesModeling And SimulationMultiple InputsRotation AnglePod Method
In this paper, proper orthogonal decomposition (POD) method is employed to build a reduced-order model from a high-order nonlinear permanent magnet synchronous machine model with multiple inputs. Three parameters are selected as the multiple inputs of the machine. These parameters are terminal current, angle of the terminal current, and rotation angle. To produce the lower-rank system, snapshots or instantaneous system states are projected onto a set of orthonormal basis functions with small dimension. The reduced model is then validated by comparing the vector potential, flux density distribution, and torque results of the original model, which indicates the capability of using the POD method in the multivariable input problems. The developed methodology can be used for fast simulations of the machine.
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Gaëtan Kerschen, Jean‐Claude Golinval, Alexander F. Vakakis et al. · Nonlinear Dynamics · 2005 · 871 citations · Full text
Numerical Analysis, Modal Analysis, Reduced Order Modeling +12