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用于电力变压器局部放电检测的高灵敏度微光纤探头
Highly Sensitive Micro-Optical Fiber Probe for Power Transformer Partial Discharge Detection
| 作者 | Ruizhi Wang · Jun Jiang · Chaoyue Zhang · Xiaohan Li · Jian Shao |
| 期刊 | IEEE Transactions on Power Delivery |
| 出版日期 | 2025年4月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | 局部放电检测 光纤传感器 微光纤探头 外差干涉解调 信噪比 |
语言:
中文摘要
局部放电(PD)检测对保障电力变压器安全运行至关重要。光纤传感器(OFS)因其抗电磁干扰、本质安全及适合嵌入式安装等优势,在PD检测中展现出良好应用前景。本文提出一种微型光纤探头(MOFP),尺寸紧凑(直径10 mm,高度4.9 mm),在保证高灵敏度的同时便于嵌入安装。采用外差干涉解调结构提升系统稳定性,优化系统参数组合使信噪比(SNR)提高24.7 dB。实验表明,该OFS在固体和油中传播的超声信号检测信噪比较传统PZT(R15α)分别提升62%和223.3%。现场应用中,OFS成功嵌入变压器内部并有效检测到PD超声信号,克服了高频电流互感器(HFCT)的电磁干扰问题以及PZT传感器安装困难与灵敏度低的缺陷,验证了该方法在变压器PD检测中的可靠性与有效性。
English Abstract
Partial discharge (PD) detection is crucial for ensuring the safe operation of power transformers. Optical fiber sensors (OFS), with advantages of electromagnetic interference (EMI) resistance, inherent safety, and suitability for embedded installation, demonstrate significant promise for PD detection. The micro-optical fiber probe (MOFP) with compact size (diameter 10 mm, height 4.9 mm) is proposed, which ensures sensitivity while offering the convenience and versatility required for embedded installation. The implementation of the heterodyne interferometric demodulation topology is employed to enhance stability, while the optimization of system parameter combinations leads to an improvement in the detection signal-to-noise ratio (SNR) by 24.7 dB. In the lab, the developed OFS achieves a 62% and 223.3% improvement in the SNR for detecting ultrasonic signals propagating in solid and in oil, respectively, compared to the typical PZT (R15α). In the field, the OFS was effectively installed inside the power transformer and detected PD ultrasonic signals, addressing the issues of EMI with HFCT and the installation difficulty and low sensitivity of PZT. The results substantiate that the developed OFS provides a novel, reliable and effective approach for PD detection in power transformers.
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SunView 深度解读
该微光纤局部放电检测技术对阳光电源储能系统具有重要应用价值。PowerTitan大型储能系统中的隔离变压器和升压变压器是关键设备,局部放电会导致绝缘劣化甚至故障。该技术的抗电磁干扰特性可克服储能变流器高频开关(尤其是SiC器件应用)产生的强电磁环境干扰,微型探头(直径10mm)便于嵌入ST系列储能变流器的紧凑结构中。相比传统HFCT和PZT方案,信噪比提升62%-223%,可集成到iSolarCloud智能运维平台实现变压器健康状态的预测性维护,降低储能电站非计划停机风险,提升系统可靠性和全生命周期经济性。