龙兆芝, 李文婷, 姚高龙, 习永臻, 李仙丽, 林福昌. 基于电光调制的小型化三维雷击脉冲电场测量装置[J]. 高电压技术, 2024, 50(11): 4961-4970. DOI: 10.13336/j.1003-6520.hve.20232031
引用本文: 龙兆芝, 李文婷, 姚高龙, 习永臻, 李仙丽, 林福昌. 基于电光调制的小型化三维雷击脉冲电场测量装置[J]. 高电压技术, 2024, 50(11): 4961-4970. DOI: 10.13336/j.1003-6520.hve.20232031
LONG Zhaozhi, LI Wenting, YAO Gaolong, XI Yongzheng, LI Xianli, LIN Fuchang. Compact Three-dimensional Lightning Impulse Electric Field Measuring Device Based on Electro-optic Modulation[J]. High Voltage Engineering, 2024, 50(11): 4961-4970. DOI: 10.13336/j.1003-6520.hve.20232031
Citation: LONG Zhaozhi, LI Wenting, YAO Gaolong, XI Yongzheng, LI Xianli, LIN Fuchang. Compact Three-dimensional Lightning Impulse Electric Field Measuring Device Based on Electro-optic Modulation[J]. High Voltage Engineering, 2024, 50(11): 4961-4970. DOI: 10.13336/j.1003-6520.hve.20232031

基于电光调制的小型化三维雷击脉冲电场测量装置

Compact Three-dimensional Lightning Impulse Electric Field Measuring Device Based on Electro-optic Modulation

  • 摘要: 非接触式的电场传感技术是目前电力系统关键节点电压测量的一种解决方案,为此以实现体积小、空间分辨力高的三维雷击脉冲电场准确测量为目标,提出了一种基于电光调制的小型化三维脉冲电场测量技术,自主研发了基于非对称直波导的三维电场测量探头,并对探头的测量范围、方向性和时域波形测量功能进行了仿真研究及试验验证。该三维探头的体积约为3 cm×3 cm×10 cm,与常规三维探头相比,缩小了约10倍,进一步提高了电场测量的空间分辨率。搭建雷电脉冲试验平台评价传感器的测量性能,结果表明,该探头不仅可真实反映了待测雷击脉冲电场的时域波形,而且具有良好的方向性,在额定值20%~120%范围内传感器综合测量误差绝对值< 3%,可实现雷击脉冲电压的准确测量。

     

    Abstract: Non-contact electric field sensing technology serves as a solution for voltage measurement at critical nodes in the current power system. This paper aims to achieve high spatial resolution and miniaturization in three-dimensional (3D) pulsed electric field measurement. A novel miniaturized 3D impulse electric field measurement technique based on electro-optic modulation is proposed. A 3D electric field measurement probe utilizing asymmetric straight waveguides has developed. Simulation studies and experimental validation have been conducted to investigate the measurement range, electric field sensing directionality, and temporal waveform reproducibility of the probe. The volume of this 3D probe is approximately 3 cm×3 cm×10 cm, which is approximately ten times smaller than conventional 3D probes, thereby further enhancing the spatial resolution of electric field measurement. From the evaluation of sensor measurement performance on lightning impulse test platform, the results indicate that the probe not only accurately reflects the temporal waveform of the measured lightning impulse electric field but also exhibits good directional characteristics. Within the rated range of 20% to 120%, the comprehensive measurement error of the sensor is better than 3%, enabling accurate measurement of lightning impulse voltage.

     

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