Upton David W, Mistry Keyur K, Mather Peter J, Zaharis Zaharias D, Atkinson Robert C, Tachtatzis Christos, Lazaridis Pavlos I
Swedish Institute of Space Physics, SE-981 Kiruna, Sweden.
Oxford Space Systems, Harwell OX11 0RL, UK.
Sensors (Basel). 2021 Jan 29;21(3):909. doi: 10.3390/s21030909.
The lifespan assessment and maintenance planning of high-voltage power systems requires condition monitoring of all the operational equipment in a specific area. Electrical insulation of electrical apparatuses is prone to failure due to high electrical stresses, and thus it is a critical aspect that needs to be monitored. The ageing process of the electrical insulation in high voltage equipment may accelerate due to the occurrence of partial discharge (PD) that may in turn lead to catastrophic failures if the related defects are left untreated at an initial stage. Therefore, there is a requirement to monitor the PD levels so that an unexpected breakdown of high-voltage equipment is avoided. There are several ways of detecting PD, such as acoustic detection, optical detection, chemical detection, and radiometric detection. This paper focuses on reviewing techniques based on radiometric detection of PD, and more specifically, using received signal strength (RSS) for the localization of faults. This paper explores the advantages and disadvantages of radiometric techniques and presents an overview of a radiometric PD detection technique that uses a transistor reset integrator (TRI)-based wireless sensor network (WSN).
高压电力系统的寿命评估和维护规划需要对特定区域内的所有运行设备进行状态监测。电气设备的电气绝缘由于高电气应力而容易发生故障,因此它是需要监测的关键方面。如果在初始阶段相关缺陷未得到处理,高压设备中电气绝缘的老化过程可能会因局部放电(PD)的发生而加速,这反过来可能导致灾难性故障。因此,需要监测局部放电水平,以避免高压设备意外击穿。检测局部放电有多种方法,如声学检测、光学检测、化学检测和辐射检测。本文重点回顾基于局部放电辐射检测的技术,更具体地说,是利用接收信号强度(RSS)进行故障定位。本文探讨了辐射技术的优缺点,并概述了一种基于晶体管复位积分器(TRI)的无线传感器网络(WSN)的局部放电辐射检测技术。