The Response to Impulse Signal on Three Phase Transformer using Vector Network Analyzer

Kwangho Kim, Jong-Hyon Jung, W. Nah
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Abstract

Abstract Transformer is widely used element on power system and industrial area. Especially the transformers installed at power system are exposed to an environment of arbitrary changed. Thus the prediction of degradation and the analysis of response to impulse are important. To conduct those works, the electrical characteristics of system should be analyzed, effectively. But the analysis of electrical characteristic in electric machine level such as pole and pad-mounted transformer is almost no, thus commercial VNA (Vector Network Analyzer) is used to getting the response in wide frequency range. However, the output power of VNA is usually under 10mW, so verification for effectiveness of measuring electrically large component should be conducted, firstly. Next, after getting total S-parameter of transformer, predicting impulse response can be performed in time-domain with circuit simulator. In this paper, it is introduced that verification effectiveness of VNA using transfer function from SFRA (Sweep Frequency Response Analyzer), firstly. Next, total S-parameter, six by six matix form, was built using measured 2 port S-parameter from vector network analyzer. To get the response to impulse which is defined by IEC 60060-1, time-domain simulation is conducted to ADS (Advenced Design System) circuit simulator.
矢量网络分析仪对三相变压器冲击信号的响应
变压器是电力系统和工业领域中广泛使用的元件。特别是电力系统中安装的变压器处于任意变化的环境中。因此,退化的预测和脉冲响应的分析是重要的。为了进行这些工作,必须有效地分析系统的电气特性。但是对于电机级的电学特性分析,如杆状和垫式变压器,几乎没有,因此使用商用的VNA(矢量网络分析仪)来获得宽频率范围内的响应。但VNA的输出功率通常在10mW以下,因此首先要对测量电大元件的有效性进行验证。然后,在得到变压器的总s参数后,利用电路模拟器在时域内进行脉冲响应预测。本文首先介绍了利用SFRA(扫描频响分析仪)传递函数验证VNA的有效性。其次,利用矢量网络分析仪测得的2端口s参数,构建6 × 6矩阵形式的总s参数。为了得到iec60060 -1所定义的脉冲响应,对ADS (advanced Design System)电路模拟器进行了时域仿真。
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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