Metrics and Strategies for Design of DC Bias Resilient Transformers

IF 3.3 Q3 ENERGY & FUELS
Akhil Prasad;Scott D. Sudhoff;Todd C. Monson;Ganapathi Subramania
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引用次数: 0

Abstract

Geomagnetic disturbances (GMDs) give rise to geomagnetically induced currents (GICs) on the earth’s surface which find their way into power systems via grounded transformer neutrals. The quasi-dc nature of the GICs results in half-cycle saturation of the power grid transformers which in turn results in transformer failure, life reduction, and other adverse effects. Therefore, transformers need to be more resilient to dc excitation. This paper sets forth dc immunity metrics for transformers. Furthermore, this paper sets forth a novel transformer architecture and a design methodology which employs the dc immunity metrics to make it more resilient to dc excitation. This is demonstrated using a time-stepping 2D finite element analysis (FEA) simulation. It was found that a relatively small change in the core geometry significantly increases transformer resiliency with respect to dc excitation.
直流偏置弹性变压器设计的度量与策略
地磁干扰(GMDs)会在地球表面产生地磁感应电流(gic),这些电流通过接地的变压器中性点进入电力系统。GICs的准直流电特性导致电网变压器半周饱和,进而导致变压器故障、寿命缩短等不利影响。因此,变压器需要对直流励磁更有弹性。本文提出了变压器直流抗扰度指标。此外,本文提出了一种新的变压器结构和设计方法,该方法采用直流抗扰度指标使其更能适应直流励磁。这是证明使用时间步进二维有限元分析(FEA)模拟。研究发现,相对于直流励磁,铁芯几何形状的一个相对较小的变化显著地增加了变压器的弹性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.80
自引率
5.30%
发文量
45
审稿时长
10 weeks
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