Chen Guojin, Zhu Yucheng, Meng Zihao, Fang Weixing, Xie Wei, Xu Ming, Li Wenxin
College of Mechanical Engineering, Hangzhou Dianzi University, Hangzhou 310018, China.
Anji Intelligent Manufacturing Technology Research Institute Co., Ltd., Hangzhou Dianzi University, Huzhou 313000, China.
Sensors (Basel). 2023 Sep 7;23(18):7727. doi: 10.3390/s23187727.
Capacitive equipment refers to its insulation design using the principle of capacitance of electrical equipment, mainly by a variety of different capacitive components in series. Most of the equipment in the substation is capacitive equipment. Once an insulation failure occurs, it will lead to extremely serious consequences. Monitoring grid overvoltage and insulation degradation of capacitive equipment is an effective means to ensure the stable operation of the power system. Therefore, in order to enhance the health management of capacitive equipment, including transformers, bushings, and current transformers, and to mitigate the risk of severe failures, it is imperative to conduct broad-spectrum frequency-domain online monitoring of overvoltages, dielectric losses, and partial discharge. However, the current monitoring work requires the utilization of multiple detection apparatuses. Aiming at the disadvantage that the existing inspection is not well integrated and requires a combination of multiple devices. This paper proposes a smart grid overvoltage identification system that utilizes partial discharge (PD) signals in correlation with dielectric loss detection. The system achieves synchronous detection of dielectric loss and high-frequency partial discharge by synchronously and in real-time acquiring four current signals from the power grid, enhancing the integration level of the hardware system.
电容性设备是指利用电气设备电容原理进行绝缘设计的设备,主要由各种不同的电容性元件串联组成。变电站中的大部分设备都是电容性设备。一旦发生绝缘故障,将导致极其严重的后果。监测电网过电压和电容性设备的绝缘劣化是确保电力系统稳定运行的有效手段。因此,为了加强对包括变压器、套管和电流互感器在内的电容性设备的健康管理,并降低严重故障风险,对过电压、介质损耗和局部放电进行广谱频域在线监测势在必行。然而,目前的监测工作需要使用多种检测仪器。针对现有检测集成度不高且需要多种设备组合的缺点,本文提出一种利用局部放电(PD)信号并结合介质损耗检测的智能电网过电压识别系统。该系统通过同步实时采集电网中的四路电流信号,实现了介质损耗与高频局部放电的同步检测,提高了硬件系统的集成度。