Photodetector array for measuring the spatial–temporal distribution characteristics of electric field in oil–pressboard insulation based on the Kerr electro‐optic effect

IF 4.4 2区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC High Voltage Pub Date : 2024-04-25 DOI:10.1049/hve2.12442
Chunjia Gao, B. Qi, Chengrong Li, Yukung Zheng
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Abstract

Accurate measurement and effective analysis of the space electric field and charge characteristics within the oil–pressboard insulation structure of converter transformer are essential for achieving precise insulation structure design. Presently, most electric field measurement methods relying on the Kerr electro‐optical effect are limited to single‐point measurements. Given the complexity of converter transformer insulation structures, including their large scale and the use of various materials, existing technologies and findings struggle to provide comprehensive electric field observations within the oil–pressboard region. After leveraging the Kerr electro‐optic effect, a high‐precision 32‐unit photodetector array has been developed to achieve regional measurements of spatial‐temporal electric field in oil–pressboard insulation. The array boasts a measurement spatial resolution of 1.4 mm2 and a sensitivity of 0.15 kV/mm, ensuring measurement accuracy exceeding 96.50%. Through practical measurements of the spatial electric field distribution within the oil–pressboard insulation under direct current voltage, the non‐uniform distribution of the electric field is effectively captured in oil. Notably, the maximum deviation in field strength at different positions within the transformer oil can reach 18.5%. Moreover, as the applied voltage increases, the unevenness coefficient of the field strength gradually rises, peaking at 1.19, which signifies a progressive expansion in the area affected by electric field distortion. By conducting tests to assess the dispersion of volume resistivity in samples from various positions within large sheets of pressboard, the variation in volume resistivity of materials is posited as one of the contributing factors to the non‐uniform distribution of electric field within the oil. The detailed accomplishments aim to provide essential technical and theoretical support for optimising insulation structure design of converter transformers.
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基于克尔电光效应的用于测量油压板绝缘层中电场时空分布特性的光电探测器阵列
精确测量和有效分析换流变压器油压板绝缘结构内的空间电场和电荷特性,对于实现精确的绝缘结构设计至关重要。目前,大多数依靠克尔电光效应的电场测量方法仅限于单点测量。鉴于换流变压器绝缘结构的复杂性,包括其庞大的规模和各种材料的使用,现有技术和研究成果难以提供油压板区域内的全面电场观测。在利用克尔电光效应之后,我们开发出了一种由 32 个单元组成的高精度光电探测器阵列,以实现对油压板绝缘区域的时空电场测量。该阵列的测量空间分辨率为 1.4 mm2,灵敏度为 0.15 kV/mm,确保测量精度超过 96.50%。通过对直流电压下油压板绝缘层内空间电场分布的实际测量,可以有效捕捉到油中电场的不均匀分布。值得注意的是,变压器油内不同位置的场强最大偏差可达 18.5%。此外,随着外加电压的增加,电场强度的不均匀系数逐渐上升,最高达到 1.19,这表明受电场畸变影响的区域逐渐扩大。通过测试评估来自大张压纸板不同位置的样品的体积电阻率的分散情况,可以认为材料体积电阻率的变化是导致油中电场分布不均匀的因素之一。详细的研究成果旨在为优化变流器变压器的绝缘结构设计提供必要的技术和理论支持。
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来源期刊
High Voltage
High Voltage Energy-Energy Engineering and Power Technology
CiteScore
9.60
自引率
27.30%
发文量
97
审稿时长
21 weeks
期刊介绍: High Voltage aims to attract original research papers and review articles. The scope covers high-voltage power engineering and high voltage applications, including experimental, computational (including simulation and modelling) and theoretical studies, which include: Electrical Insulation ● Outdoor, indoor, solid, liquid and gas insulation ● Transient voltages and overvoltage protection ● Nano-dielectrics and new insulation materials ● Condition monitoring and maintenance Discharge and plasmas, pulsed power ● Electrical discharge, plasma generation and applications ● Interactions of plasma with surfaces ● Pulsed power science and technology High-field effects ● Computation, measurements of Intensive Electromagnetic Field ● Electromagnetic compatibility ● Biomedical effects ● Environmental effects and protection High Voltage Engineering ● Design problems, testing and measuring techniques ● Equipment development and asset management ● Smart Grid, live line working ● AC/DC power electronics ● UHV power transmission Special Issues. Call for papers: Interface Charging Phenomena for Dielectric Materials - https://digital-library.theiet.org/files/HVE_CFP_ICP.pdf Emerging Materials For High Voltage Applications - https://digital-library.theiet.org/files/HVE_CFP_EMHVA.pdf
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