用于监测高压直流网络的光子电流传感器的改进校准方法

IF 2.2 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Sensors Letters Pub Date : 2024-08-09 DOI:10.1109/LSENS.2024.3441228
Alfred Amiolemen;Grzegorz Fusiek;Pawel Niewczas
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引用次数: 0

摘要

这封信介绍了一种新型光学电流传感器(OCS)的改进校准方法,该方法基于光子和压电技术的集成,可促进高压直流(HVDC)网络内电流的分布式测量。该传感器可安装在高压直流海底电缆接头处,提供远程分布式电流测量,以加强对高压直流电力电缆资产的监控和保护。原型传感器由一个非线性放大器组成,具有增强的动态范围,可减少低输入信号电平时受传感器询问系统限制而产生的测量误差。改进的校准方法在传感器校准特性中加入了分离式片断曲线拟合。实验结果表明,测量误差显著减小,表明传感器有可能符合 IEC 61869-14 标准对 1 类直流互感器 (DCCT) 设备的精度要求。
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Improved Calibration Method of the Photonic Current Sensor for Monitoring HVDC Networks
This letter presents an improved calibration method for a novel optical current sensor (OCS) based on the integration of photonic and piezoelectric technologies to facilitate the distributed measurement of current within high-voltage direct current (HVDC) networks. The sensor is designed to fit in an HVDC subsea cable splice to provide remote distributed current measurement for enhanced monitoring and protection of HVDC power cable assets. The prototype transducer comprises a nonlinear amplifier with an enhanced dynamic range to reduce the measurement errors that are dominated by the limitations of the sensor interrogation system at low input signal levels. The improved calibration method incorporates segregated piecewise curve fitting into the sensor calibration characteristic. The experimental results demonstrate the significant reduction of the measurement errors showing the potential of the sensor to comply with the accuracy requirements set by the IEC 61869-14 standard for Class 1 direct current transformer (DCCT) devices.
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来源期刊
IEEE Sensors Letters
IEEE Sensors Letters Engineering-Electrical and Electronic Engineering
CiteScore
3.50
自引率
7.10%
发文量
194
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