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Geometry optimization of magnetic shunts in power transformers based on a particular hybrid finite-element boundary-element model and sensitivity analysis

机译:基于有限元混合有限元模型和灵敏度分析的电力变压器磁分流几何优化

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摘要

In this paper, the influence of magnetic shunt geometry on the transformer leakage field and short-circuit impedance is examined. The magnetic-field computation is conducted with the use of a particular hybrid finite-element method (FEM) boundary-element method (BEM) formulation, facilitating the parametric investigation of magnetic shunt effects through application of appropriate boundary conditions. A design sensitivity analysis for the optimization of the shunt geometry ensuring a desired change in short-circuit impedance and shunt losses has also been developed, in conjunction with the magnetic-field model. © 2005 IEEE.
机译:本文研究了磁分路几何形状对变压器漏磁场和短路阻抗的影响。磁场计算是通过使用特定的混合有限元方法(FEM)边界元方法(BEM)公式进行的,从而通过应用适当的边界条件促进了磁分流效应的参数研究。结合磁场模型,还开发了用于优化分流器几何形状的设计灵敏度分析,以确保短路阻抗和分流器损耗发生所需的变化。 ©2005 IEEE。

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