Application of Integrated Optical Electric-Field Sensor on the Measurements of Transient Voltages in AC High-Voltage Power Grids

Transient voltages in the power grid are the key for the fault analysis of a power grid, optimized insulation design, and the standardization of the high-voltage testing method. The traditional measuring equipment, based on electrical engineering, normally has a limited bandwidth and response speed,...

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Main Authors: Shijun Xie, Yu Zhang, Huaiyuan Yang, Hao Yu, Zhou Mu, Chenmeng Zhang, Shupin Cao, Xiaoqing Chang, Ruorong Hua
Format: Article
Language:English
Published: MDPI AG 2019-05-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/9/9/1951
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spelling doaj-709d97229ecc4980bf40950a8a5ec05f2020-11-24T21:30:09ZengMDPI AGApplied Sciences2076-34172019-05-0199195110.3390/app9091951app9091951Application of Integrated Optical Electric-Field Sensor on the Measurements of Transient Voltages in AC High-Voltage Power GridsShijun Xie0Yu Zhang1Huaiyuan Yang2Hao Yu3Zhou Mu4Chenmeng Zhang5Shupin Cao6Xiaoqing Chang7Ruorong Hua8Postdoctoral Workstation, State Grid Sichuan Electric Power Research Institute, Chengdu 610041, ChinaPostdoctoral Workstation, State Grid Sichuan Electric Power Research Institute, Chengdu 610041, ChinaState Key Lab of Control and Simulation of Power Systems and Generation Equipment, Tsinghua University, Beijing 100084, ChinaState Key Lab of Control and Simulation of Power Systems and Generation Equipment, Tsinghua University, Beijing 100084, ChinaPostdoctoral Workstation, State Grid Sichuan Electric Power Research Institute, Chengdu 610041, ChinaPostdoctoral Workstation, State Grid Sichuan Electric Power Research Institute, Chengdu 610041, ChinaPostdoctoral Workstation, State Grid Sichuan Electric Power Research Institute, Chengdu 610041, ChinaPostdoctoral Workstation, State Grid Sichuan Electric Power Research Institute, Chengdu 610041, ChinaPostdoctoral Workstation, State Grid Sichuan Electric Power Research Institute, Chengdu 610041, ChinaTransient voltages in the power grid are the key for the fault analysis of a power grid, optimized insulation design, and the standardization of the high-voltage testing method. The traditional measuring equipment, based on electrical engineering, normally has a limited bandwidth and response speed, which are also featured by a huge size and heavy weight. In this paper, an integrated optical electric-field sensor based on the Pockels effect was developed and applied to measure the transient voltages on the high-voltage conductors in a non-contact measuring mode. The measuring system has a response speed faster than 6 ns and a wide bandwidth ranging from 5 Hz to 100 MHz. Moreover, the sensors have the dimensions of 18 mm by 18 mm by 48 mm and a light weight of dozens of grams. The measuring systems were employed to monitor the lightning transient voltages on a 220 kV overhead transmission line. The switching transient voltages were also measured by the measuring system during the commissioning of the 500 kV middle Tibet power grid. In 2017, 307 lightning transient voltages caused by induction stroke were recorded. The characteristics of these voltage waveforms are different from the standard lightning impulse voltage proposed by IEC standards. Three types of typical switching transient voltage in 500 kV AC power grid were measured, and the peak values of these overvoltages can reach 1.73 times rated voltage.https://www.mdpi.com/2076-3417/9/9/1951opticalelectric-fieldsensormeasurementtransient voltageAC power gridPockels effect
collection DOAJ
language English
format Article
sources DOAJ
author Shijun Xie
Yu Zhang
Huaiyuan Yang
Hao Yu
Zhou Mu
Chenmeng Zhang
Shupin Cao
Xiaoqing Chang
Ruorong Hua
spellingShingle Shijun Xie
Yu Zhang
Huaiyuan Yang
Hao Yu
Zhou Mu
Chenmeng Zhang
Shupin Cao
Xiaoqing Chang
Ruorong Hua
Application of Integrated Optical Electric-Field Sensor on the Measurements of Transient Voltages in AC High-Voltage Power Grids
Applied Sciences
optical
electric-field
sensor
measurement
transient voltage
AC power grid
Pockels effect
author_facet Shijun Xie
Yu Zhang
Huaiyuan Yang
Hao Yu
Zhou Mu
Chenmeng Zhang
Shupin Cao
Xiaoqing Chang
Ruorong Hua
author_sort Shijun Xie
title Application of Integrated Optical Electric-Field Sensor on the Measurements of Transient Voltages in AC High-Voltage Power Grids
title_short Application of Integrated Optical Electric-Field Sensor on the Measurements of Transient Voltages in AC High-Voltage Power Grids
title_full Application of Integrated Optical Electric-Field Sensor on the Measurements of Transient Voltages in AC High-Voltage Power Grids
title_fullStr Application of Integrated Optical Electric-Field Sensor on the Measurements of Transient Voltages in AC High-Voltage Power Grids
title_full_unstemmed Application of Integrated Optical Electric-Field Sensor on the Measurements of Transient Voltages in AC High-Voltage Power Grids
title_sort application of integrated optical electric-field sensor on the measurements of transient voltages in ac high-voltage power grids
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2019-05-01
description Transient voltages in the power grid are the key for the fault analysis of a power grid, optimized insulation design, and the standardization of the high-voltage testing method. The traditional measuring equipment, based on electrical engineering, normally has a limited bandwidth and response speed, which are also featured by a huge size and heavy weight. In this paper, an integrated optical electric-field sensor based on the Pockels effect was developed and applied to measure the transient voltages on the high-voltage conductors in a non-contact measuring mode. The measuring system has a response speed faster than 6 ns and a wide bandwidth ranging from 5 Hz to 100 MHz. Moreover, the sensors have the dimensions of 18 mm by 18 mm by 48 mm and a light weight of dozens of grams. The measuring systems were employed to monitor the lightning transient voltages on a 220 kV overhead transmission line. The switching transient voltages were also measured by the measuring system during the commissioning of the 500 kV middle Tibet power grid. In 2017, 307 lightning transient voltages caused by induction stroke were recorded. The characteristics of these voltage waveforms are different from the standard lightning impulse voltage proposed by IEC standards. Three types of typical switching transient voltage in 500 kV AC power grid were measured, and the peak values of these overvoltages can reach 1.73 times rated voltage.
topic optical
electric-field
sensor
measurement
transient voltage
AC power grid
Pockels effect
url https://www.mdpi.com/2076-3417/9/9/1951
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