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Finite Elements based optimal design approach for high voltage pulse transformers

机译:基于有限元的高压脉冲变压器优化设计方法

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High voltage pulse transformers are widely used in klystron modulators. For these topologies, the quality of the modulator output voltage is strongly dependent on the pulse transformer performance. An optimal design process of such transformers is a necessity, particularly when the specifications of the output voltage are tight such as in the case of the CLIC klystron modulator under study at CERN [1]. Using a sufficiently accurate analytical model to optimize a high voltage transformer design will yield the most efficient design process. The accuracy of the design can then be verified with a Finite Element Analysis as a final check. However in the case of high voltage transformers, it can be difficult to obtain an analytical model that is sufficiently accurate particularly due to effects of parasitic capacitance. As such, it would be desirable to find an efficient method to use only Finite Element Analysis to find an optimal design. This paper presents a new design approach for high voltage pulse transformers, based on a FEA dimensioning model only. For each iteration of the non-linear optimization process, the transformer parameters used to compute the objective and constraints functions are directly derived from the 2D FEA dimensioning model. Programming techniques to speed-up the FEA model evaluation for each iteration of the optimization procedure are presented.
机译:高压脉冲变压器广泛用于速调管调制器中。对于这些拓扑,调制器输出电压的质量在很大程度上取决于脉冲变压器的性能。这种变压器的最佳设计过程是必要的,特别是在输出电压的规格严格的情况下,例如在CERN研究的CLIC速调管调制器的情况下[1]。使用足够准确的分析模型来优化高压变压器设计将产生最有效的设计过程。然后可以使用有限元分析作为最终检查来验证设计的准确性。但是,在高压变压器的情况下,特别是由于寄生电容的影响,可能难以获得足够准确的分析模型。这样,期望找到一种仅使用有限元分析来找到最佳设计的有效方法。本文仅基于FEA尺寸模型,提出了一种高压脉冲变压器的新设计方法。对于非线性优化过程的每次迭代,用于计算目标函数和约束函数的变压器参数直接从2D FEA尺寸模型中得出。提出了用于加快优化过程每次迭代的FEA模型评估速度的编程技术。

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