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Novel inductive sensor solutions for on-line partial discharge and power quality monitoring

机译:用于在线局部放电和电能质量监控的新型感应式传感器解决方案

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Networks of medium voltage have spread over a long distance through underground cables. The aim to prolong the life span of existing network assets increases the need for condition monitoring to prevent unplanned and long lasting interruptions. Continuous on-line partial discharge (PD) measurement is an excellent way to determine the overall health of the medium voltage (MV) components and to detect developing faults in underground cables. A sensor is an essential part of the PD monitoring system which measures the high frequency PD signals. PD sensors can be used to measure power frequency current and harmonic currents on the MV side to estimate the thermal loading of transformer or incoming cable provided that the sensors have a suitable frequency response for measuring low frequency signals as well. A novel inductive sensor is described in this paper which allows both PD measurements as well as power quality (PQ) measurements at frequency range below 2.5 kHz. Authors did experiments on different ferrite cores in order to design the best possible sensor which can be used for both PD and PQ measurement. Characteristics of the sensors, including sensitivity, saturation current, and frequency bandwidth, as well as relative errors are provided and analyzed under laboratory conditions. At the end, developed sensors are compared with a commercial HFCT sensor, the Rogowski coil and power quality current sensors to show the capability of the sensors to be used for PD and PQ measurements.
机译:中压网络已通过地下电缆在很长的距离内传播。延长现有网络资产寿命的目的增加了对状态监视的需求,以防止计划外和长期的中断。连续在线局部放电(PD)测量是确定中压(MV)组件总体健康状况并检测地下电缆中出现的故障的绝佳方法。传感器是PD监控系统的重要组成部分,用于测量高频PD信号。 PD传感器可用于测量中压侧的工频电流和谐波电流,以估算变压器或输入电缆的热负荷,前提是这些传感器也具有合适的频率响应,可用于测量低频信号。本文介绍了一种新颖的电感式传感器,它允许在低于2.5 kHz的频率范围内进行PD测量以及电能质量(PQ)测量。作者在不同的铁氧体磁芯上进行了实验,以设计出可用于PD和PQ测量的最佳传感器。在实验室条件下提供并分析了传感器的特性,包括灵敏度,饱和电流和频率带宽以及相对误差。最后,将开发的传感器与商用HFCT传感器,Rogowski线圈和电能质量电流传感器进行了比较,以展示该传感器用于PD和PQ测量的能力。

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