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Towards Optical Partial Discharge Detection with Micro Silicon Photomultipliers

机译:利用微型硅光电倍增管实现光学局部放电检测

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摘要

Optical detection is reliable in intrinsically characterizing partial discharges (PDs). Because of the great volume and high-level power supply of the optical devices that can satisfy the requirements in photosensitivity, optical PD detection can merely be used in laboratory studies. To promote the practical application of the optical approach in an actual power apparatus, a silicon photomultiplier (SiPM)-based PD sensor is introduced in this paper, and its basic properties, which include the sensitivity, pulse resolution, correlation with PD severity, and electromagnetic (EM) interference immunity, are experimentally evaluated. The stochastic phase-resolved PD pattern (PRPD) for three typical insulation defects are obtained by SiPM PD detector and are compared with those obtained using a high-frequency current transformer (HFCT) and a vacuum photomultiplier tube (PMT). Because of its good performances in the above aspects and its additional advantages, such as the small size, low power supply, and low cost, SiPM offers great potential in practical optical PD monitoring.
机译:光学检测在本质上表征局部放电(PD)方面是可靠的。由于可以满足光敏性要求的光学设备的大容量和高水平电源,因此光学PD检测只能用于实验室研究。为了促进光学方法在实际功率设备中的实际应用,本文介绍了一种基于硅光电倍增管(SiPM)的局部放电传感器,其基本特性包括灵敏度,脉冲分辨率,与局部放电严重程度的相关性以及对电磁(EM)干扰抗扰性进行了实验评估。通过SiPM PD检测器获得了三种典型绝缘缺陷的随机相分辨PD图案(PRPD),并将其与使用高频电流互感器(HFCT)和真空光电倍增管(PMT)所获得的那些相比较。由于其在上述方面的良好性能以及诸如小尺寸,低电源和低成本等附加优势,SiPM在实际的光学PD监控中具有巨大的潜力。

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