李信哲, 任明, 李琛, 陈荣发, 余家赫, 夏昌杰. 基于单光子探测的局部放电多光谱诊断方法研究[J]. 中国电机工程学报, 2022, 42(17): 6511-6520. DOI: 10.13334/j.0258-8013.pcsee.211527
引用本文: 李信哲, 任明, 李琛, 陈荣发, 余家赫, 夏昌杰. 基于单光子探测的局部放电多光谱诊断方法研究[J]. 中国电机工程学报, 2022, 42(17): 6511-6520. DOI: 10.13334/j.0258-8013.pcsee.211527
LI Xinzhe, REN Ming, LI Chen, CHEN Rongfa, YU Jiahe, XIA Changjie. Multispectral Partial Discharge Diagnosis Based on Single Photon Detection[J]. Proceedings of the CSEE, 2022, 42(17): 6511-6520. DOI: 10.13334/j.0258-8013.pcsee.211527
Citation: LI Xinzhe, REN Ming, LI Chen, CHEN Rongfa, YU Jiahe, XIA Changjie. Multispectral Partial Discharge Diagnosis Based on Single Photon Detection[J]. Proceedings of the CSEE, 2022, 42(17): 6511-6520. DOI: 10.13334/j.0258-8013.pcsee.211527

基于单光子探测的局部放电多光谱诊断方法研究

Multispectral Partial Discharge Diagnosis Based on Single Photon Detection

  • 摘要: 灵敏的信号感知和准确的故障诊断是局部放电光测法应用的关键,该文首先以单光子级固态光电器件为基础,研制多个独立光谱通道的微型传感装置,然后基于该装置对SF6中的典型局部放电进行多光谱同步测量,对光脉冲波形、序列、相基统计图谱等多方面进行分析,并提出基于三元图的多光谱数据分析方法,论证多光谱局部放电光学诊断技术的优势,提出该装置在GIS中可能的融合方法。结果表明,微型多光谱传感器能够有效探测不同波段下的局部放电光脉冲;多光谱脉冲的强度和比例与局部放电类型具有强相关性,并在统计图谱和三元图谱上表现出较明显的统计规律。相比传统局部放电诊断方法,多光谱检测能够提供更高维度的放电信息,为缺陷识别和危险性评估提供更丰富、更准确的判别依据,并且基本不受放电位置的影响。

     

    Abstract: Sensitive signal perception and precise fault diagnosis are the key to the application of optical detection for partial discharge. In this paper, a micro-sensing device with multiple independent spectral channels was developed based on the single-photon solid state optoelectronic devices. Then, a multi-spectral synchronous measurement of typical partial discharge in SF6 was carried out based on this device, and the optical pulse waveform, pulse train, phase-based statistical map and other aspects were analyzed. Furthermore, a multispectral data analysis method based on the ternary graph was proposed, demonstrating the advantages of multispectral partial discharge diagnosis technology. Finally, the possible fusion method of GIS was proposed. The results show that the micro multispectral sensor can effectively detect partial discharge light pulses in different wavebands; the intensity and proportion of the multispectral pulses have a strong correlation with partial discharges' types. It shows obvious statistical rules on the statistical and ternary map. Compared with traditional partial discharge diagnosis methods, multispectral detection can provide higher-dimensional discharge information, and a more abundant and accurate basis for fault recognition and risk assessment, which is not affected by the location of discharge.

     

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