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Minimized Field Enhancement Cylindrical Air-Core High-Voltage Pulse Transformer

机译:最小化的场增强圆柱空心高压脉冲变压器

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An air-core strip-type high-voltage pulse transformer (HVPT) features a relatively simple structure in terms of design and fabrication. However, this HVPT requires considerable attention to prevent dielectric breakdown between the conductor windings. Because each spiral winding must be very thin, the field enhancement at the edges of the windings is very high. Therefore, it is important to develop proper methods to reduce the field enhancement factor and to prevent the dielectric breakdown at the winding edges. In this paper, in order to minimize the field enhancement, the proposed HVPT winding edges were folded, and each winding width was designed to decrease gradually to form a reverse trapezoid. These windings were insulated by multilayer insulators arranged in a specific manner. The requirement specifications are a maximum input voltage of 50 kV and an output voltage of 400 kV. This paper describes a design process and an electric field analysis to reduce the field enhancement. The simulation and experimental results confirmed the validity of the fabricated HVPT. The dielectric breakdown strength was tested up to 467 kV.
机译:空心带状高压脉冲变压器(HVPT)在设计和制造方面具有相对简单的结构。但是,此HVPT需要特别注意以防止导体绕组之间的绝缘击穿。因为每个螺旋形绕组必须非常薄,所以绕组边缘的场增强非常高。因此,重要的是开发适当的方法以减小场增强因子并防止绕组边缘处的电介质击穿。在本文中,为了最小化场增强,将建议的HVPT绕组边缘折叠起来,并将每个绕组宽度设计为逐渐减小以形成反向梯形。这些绕组由以特定方式布置的多层绝缘子绝缘。要求规格是最大输入电压为50 kV,输出电压为400 kV。本文描述了减少电场增强的设计过程和电场分析。仿真和实验结果证实了所制造HVPT的有效性。测试了高达467 kV的绝缘击穿强度。

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