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Optimisation of a sensor for onsite detection of partial discharges in power transformers by the UHF method

机译:通过UHF方法优化用于现场检测电力变压器局部放电的传感器

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Among the different solutions which allow onsite Partial Discharge measurement in energized power transformers, the UHF technique is gaining general interest. In order to apply this method in existing transformers, it is considered advantageous to design a UHF sensor to be fitted inside the transformer tank. This paper describes the constraints affecting the development of such sensor and the process followed to optimize its design. During this process, different solutions for broadband UHF antennas were analysed. The selection was based on computer simulation and experimental results. Computer simulation was used to evaluate differences in radiation pattern, antenna impedance, gain and effective area. Measurements of the antenna response to different partial discharge sources in oil were performed using an oil dielectric breakdown test set in an electromagnetic shielded laboratory. A group of selected antennas were then tested in a power transformer simulating the broadband signals generated by partial discharges by injecting controlled voltage pulses in the transformer. Finally, a sensor based on a conical monopole antenna structure was built and attached to a specially designed housing to be fitted inside the transformer tank through the drain valve. This final prototype was benchmarked during a high voltage factory test of a power transformer which showed a significant partial discharge activity.
机译:在允许对带电电力变压器进行局部放电测量的不同解决方案中,UHF技术引起了人们的普遍关注。为了在现有的变压器中应用该方法,将UHF传感器设计为安装在变压器箱内被认为是有利的。本文介绍了影响此类传感器开发的制约因素以及优化其设计所遵循的过程。在此过程中,分析了宽带UHF天线的不同解决方案。选择是基于计算机模拟和实验结果。使用计算机仿真来评估辐射方向图,天线阻抗,增益和有效面积的差异。使用电磁屏​​蔽实验室中的油电介质击穿测试仪对天线对油中不同局部放电源的响应进行了测量。然后在电力变压器中测试一组选定的天线,通过在变压器中注入受控电压脉冲来模拟由局部放电产生的宽带信号。最后,建立了一个基于锥形单极天线结构的传感器,并将其连接到专门设计的外壳上,以便通过排水阀安装在变压器箱内。最终原型在电力变压器的高压工厂测试中进行了基准测试,该测试显示出明显的局部放电活动。

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