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Finite-Element-Based Optimal Design Approach for High-Voltage Pulse Transformers

机译:高压脉冲变压器的基于有限元的优化设计方法

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This paper presents an optimal design methodology of monolithic high-voltage (HV) pulse transformers based on the direct 2-D finite-element analysis (FEA) identification of the electrical equivalent circuit parameters without any simplified analytical modeling. This method is applied to the preliminary optimal design of the monolithic HV pulse transformer for the future compact linear collider modulators under study at CERN. The feasibility of such a transformer with tight specifications is demonstrated. The predicted performance obtained with the direct 2-D FEA optimization process is validated by 3-D FEA simulation. The dimensioning model based on the direct 2-D FEA identification of the electrical equivalent circuit parameters is validated on a prototype.
机译:本文基于对等效电路参数的直接二维有限元分析(FEA)识别,无需任何简化的分析模型,即可提供一种单片式高压(HV)脉冲变压器的最佳设计方法。该方法适用于CERN正在研究的未来紧凑型线性对撞机调制器的单片HV脉冲变压器的初步优化设计。证明了这种具有严格规格的变压器的可行性。通过2-D FEA优化过程获得的预期性能已通过3-D FEA仿真得到了验证。在原型上验证了基于对等效电路参数的直接二维FEA识别的尺寸模型。

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