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Design and Application of a Metamaterial Superstrate on a Bio-Inspired Antenna for Partial Discharge Detection through Dielectric Windows

机译:通过电介质窗口在生物启发天线上进行局部放电检测的超材料上层板的设计和应用

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摘要

The adaptation of dielectric windows as metamaterial superstrate over a bio-inspired Printed Monopole Antenna (PMA) was evaluated in order to improve the detection sensitivity of Ultra High Frequency (UHF) sensors designed for Partial Discharge (PD) measurement. For this purpose, rectangular and circular Split Ring Resonators (SRR) structures were designed and evaluated aiming to achieve a metamaterial superstrate that improves the characteristics of the bio-inspired PMA as the gain, bandwidth, and radiation pattern. Measurements of the PMA with metamaterial superstrate were carried out in an anechoic chamber and compared to the simulations performed. The results show that the metamaterial superstrate insertion did not impact the original operating bandwidth, covering most of the characteristic frequency range of PD activity. Moreover, this insertion resulted in a mean gain enhancement of 0.7 dBi regarding the reference PMA, resulting in an antenna with better sensitivity for PD detection (mean gain of 3.61 dBi). The PMA-metamaterial set PD detection sensitivity was evaluated through laboratory tests with a point-to-plane PD generator setup and in field with measurements from a 230 kV current transformer. The developed PMA-metamaterial set was able to detect, successfully, the activity of PD for both tests, being classified as an optimized sensor for PD detection through dielectric windows.
机译:为了提高设计用于局部放电(PD)测量的超高频(UHF)传感器的检测灵敏度,对介电窗作为超材料覆盖在生物启发式印刷单极天线(PMA)上的适应性进行了评估。为此,设计并评估了矩形和圆形的裂环谐振器(SRR)结构,以实现一种超材料覆盖层,该覆盖层可以改善生物启发的PMA的增益,带宽和辐射方向图的特性。在无回声室中对具有超材料上覆层的PMA进行了测量,并将其与进行的模拟进行了比较。结果表明,超材料上覆层的插入不会影响原始的工作带宽,覆盖了PD活动的大部分特征频率范围。此外,这种插入使参考PMA的平均增益提高了0.7 dBi,从而使天线具有更好的PD检测灵敏度(平均增益为3.61 dBi)。通过使用点对面PD发生器设置的实验室测试,以及通过230 kV电流互感器进行的现场测量,评估了PMA元材料设置的PD检测灵敏度。研发的PMA元材料套件能够成功检测两种测试中PD的活性,被归类为通过介电窗检测PD的最佳传感器。

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