用于电力变压器局部放电在线检测的超高频传感器:Hilbert分形、Moore分形和Peano分形

M. A. Abd Jalil, A. S. Rosmi, M. Rohani, M. Isa, N. D. Roslizan, W. Leow, M. A. Jamlos
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引用次数: 1

摘要

局部放电(Partial discharge, PD)是高压设备发生故障的原因,是由于绝缘系统的击穿发生在设备上,甚至是旧设备或新设备。变压器油中的局部放电是导致变压器绝缘失效和击穿的重要原因之一。因此,需要一个传感器在电力变压器的早期阶段连续监测和检测PD。天线是基于超高频(UHF)方法检测PD的传感器之一。然而,天线的尺寸是变压器油箱安装的主要问题。为此,设计了尺寸为10 × 10 cm的Moore、Hilbert和Peano三种分形天线,工作在0.3 GHz ~ 3 GHz的UHF范围内,能够检测电磁波产生的局部放电信号的频率。分析比较了该天线在回波损耗、驻波比和辐射方向图等方面的性能,用于电力变压器局部放电检测。结果表明,在0.72 GHz ~ 2.77 GHz工作频率范围内,四阶Hilbert分形天线是电力变压器局部放电检测的最佳天线。该天线在1.67 GHz谐振频率下回波损耗阈值较低,为-36.2 dB,驻波比接近1.03。最后,与其他类型的天线相比,该天线的辐射方向图几乎是半球形的,各频率的增益变化几乎稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
UHF Sensors for On-line Partial Discharge Detection on Power Transformer: Hilbert fractal, Moore Fractal and Peano fractal
Partial discharge (PD) is the causes of the fault to occur in high voltage equipment due to the breakdown of the insulation system happen on equipment, even old equipment or new equipment. The PD in transformer oil is one of the significant causes of insulation failure and a breakdown. Hence, a sensor is needed to continuously monitor and detect the PD at an early stage on the power transformer. An antenna is one of the sensors that can be used to detect PD based on ultra-high frequency (UHF) method. However, the size of the antenna is the main problem to be installed in the transformer tank. Thus, three types of antenna which are Moore, Hilbert and Peano fractal with the dimension of 10 X 10 cm is designed to operate in UHF range 0.3 GHz to 3 GHz to be able to detect the frequency of partial discharge signal generated by electromagnetic waves. The performance of the proposed antennas in terms of return loss, Voltage Standing Wave Ratio (VSWR) and radiation pattern are analysed and compared for PD detection on the power transformer. Based on the result, the fourth-order of Hilbert fractal antenna was found to be the best antenna for PD detection in power transformer at working frequency range from 0.72 GHz to 2.77 GHz. This antenna also has low threshold of return loss at -36.2 dB for the resonant frequency at 1.67 GHz and the value of VSWR is near to one which is 1.03. Lastly, the radiation pattern of this antenna is almost in hemisphere shape and the gain variation of all frequencies are nearly stable compared to the other types of antenna.
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