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基于光纤布拉格光栅-压电陶瓷的用于电能质量测量的光学电压互感器

Optical Voltage Transformer Based on FBG-PZT for Power Quality Measurement.

作者信息

Gonçalves Marceli N, Werneck Marcelo M

机构信息

Photonics and Instrumentation Laboratory, Electrical Engineering Program, COPPE-Universidade Federal do Rio de Janeiro, Rio de Janeiro 21949-598, Brazil.

Photonics and Instrumentation Laboratory, Nanotecnology Engineering Program, COPPE-Universidade Federal do Rio de Janeiro, Rio de Janeiro 21949-598, Brazil.

出版信息

Sensors (Basel). 2021 Apr 12;21(8):2699. doi: 10.3390/s21082699.

Abstract

Optical Current Transformers (OCTs) and Optical Voltage Transformers (OVTs) are an alternative to the conventional transformers for protection and metering purposes with a much smaller footprint and weight. Their advantages were widely discussed in scientific and technical literature and commercial applications based on the well-known Faraday and Pockels effect. However, the literature is still scarce in studies evaluating the use of optical transformers for power quality purposes, an important issue of power system designed to analyze the various phenomena that cause power quality disturbances. In this paper, we constructed a temperature-independent prototype of an optical voltage transformer based on fiber Bragg grating (FBG) and piezoelectric ceramics (PZT), adequate to be used in field surveys at 13.8 kV distribution lines. The OVT was tested under several disturbances defined in IEEE standards that can occur in the electrical power system, especially short-duration voltage variations such as SAG, SWELL, and INTERRUPTION. The results demonstrated that the proposed OVT presents a dynamic response capable of satisfactorily measuring such disturbances and that it can be used as a power quality monitor for a 13.8 kV distribution system. Test on the proposed system concluded that it was capable to reproduce up to the 41st harmonic without significative distortion and impulsive surges up to 2.5 kHz. As an advantage, when compared with conventional systems to monitor power quality, the prototype can be remote-monitored, and therefore, be installed at strategic locations on distribution lines to be monitored kilometers away, without the need to be electrically powered.

摘要

光学电流互感器(OCT)和光学电压互感器(OVT)是传统互感器的替代品,用于保护和计量目的,占地面积和重量要小得多。基于著名的法拉第效应和泡克尔斯效应,它们的优势在科学技术文献和商业应用中得到了广泛讨论。然而,在评估光学互感器用于电能质量目的方面的研究仍然很少,而电能质量是电力系统设计中一个重要问题,旨在分析导致电能质量扰动的各种现象。在本文中,我们构建了一个基于光纤布拉格光栅(FBG)和压电陶瓷(PZT)的与温度无关的光学电压互感器原型,适用于13.8 kV配电线路的现场测量。该OVT在IEEE标准定义的几种可能发生在电力系统中的扰动下进行了测试,特别是短时电压变化,如电压暂降、电压骤升和中断。结果表明,所提出的OVT具有动态响应能力,能够令人满意地测量此类扰动,并且可以用作13.8 kV配电系统的电能质量监测器。对所提出系统的测试得出结论,它能够再现高达第41次谐波且无明显失真,以及高达2.5 kHz的脉冲浪涌。与传统的电能质量监测系统相比,该原型的一个优点是可以进行远程监测,因此可以安装在配电线路上数公里外的战略位置进行监测,而无需供电。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1380/8069762/c97372d0e6ba/sensors-21-02699-g001.jpg

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