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用电容式电场传感器测量暂态过电压

Measurement of Transient Overvoltages by Capacitive Electric Field Sensors.

作者信息

Probst Felipe L, Beltle Michael, Tenbohlen Stefan

机构信息

Institute of Power Transmission and High Voltage Technology (IEH), University of Stuttgart, 70569 Stuttgart, Germany.

出版信息

Sensors (Basel). 2024 Feb 20;24(5):1357. doi: 10.3390/s24051357.

Abstract

The accurate measurement and the investigation of electromagnetic transients are becoming more important, especially with the increasing integration of renewable energy sources into the power grid. These sources introduce new transient phenomena due to the extensive use of power electronics. To achieve this, the measurement devices must have a broadband response capable of measuring fast transients. This paper presents a capacitive electric field sensor-based measurement system to measure transient overvoltages in high-voltage substations. The concept and design of the measurement system are first presented. Then, the design and concept are validated using tests performed in a high-voltage laboratory. Afterwards, two different calibration techniques are discussed: the simplified method (SM) and the coupling capacitance compensation (CCC) method. Finally, three recorded transients are evaluated using the calibration methods. The investigation revealed that the SM tends to overestimate the maximum overvoltage, highlighting the CCC method as a more suitable approach for calibrating transient overvoltage measurements. This measurement system has been validated using various measurements and can be an efficient and flexible solution for the long-term monitoring of transient overvoltages in high-voltage substations.

摘要

电磁瞬变的精确测量和研究正变得越来越重要,尤其是随着可再生能源越来越多地并入电网。由于电力电子设备的广泛使用,这些能源引入了新的瞬变现象。为实现这一点,测量设备必须具备能够测量快速瞬变的宽带响应。本文提出了一种基于电容式电场传感器的测量系统,用于测量高压变电站中的瞬态过电压。首先介绍了测量系统的概念和设计。然后,通过在高压实验室进行的测试对设计和概念进行验证。之后,讨论了两种不同的校准技术:简化方法(SM)和耦合电容补偿(CCC)方法。最后,使用校准方法对三个记录的瞬变进行评估。研究表明,简化方法往往会高估最大过电压,这突出了耦合电容补偿方法是校准瞬态过电压测量的更合适方法。该测量系统已通过各种测量得到验证,并且可以成为高压变电站瞬态过电压长期监测的高效且灵活的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b44f/10935232/b0df97490a34/sensors-24-01357-g001.jpg

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