研究SF6气体局部放电机理的新型测量分析系统

H. Kojima, N. Hayakawa, F. Endo, H. Okubo
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引用次数: 5

摘要

了解SF6气体局部放电的机理对电力设备局部放电的诊断至关重要,有助于电力应用的优化设计。然而,由于非均匀电场作用下PD特性的复杂性,对SF6中PD的机理还不够了解。为此,我们旨在通过测量PD在SF6气体中的电流波形、传播特性和发光特性,并对这些数据进行分析,揭示PD的机理。为此,我们开发了优秀的测量和分析技术。分析交流电压下的局部放电,不仅要考虑局部放电的波形,还要考虑局部放电的传播特性。构建了局部放电电流脉冲波形分析系统。该系统实现了对局部放电电流的高速连续观测,并对局部放电电流脉冲的传播进行了统计分析。将PD- cpwa系统应用于SF6中金属颗粒PD活性的诊断,可以识别出SF6中金属颗粒的类型和大小。另一方面,为了分析脉冲电压作用下的局部放电,采用多种方法进行超高速局部放电测量是非常重要的。为了研究脉冲放电的时空机制,对脉冲放电的电流和发光强度波形、条纹和静止光发射图像以及脉冲放电光谱的时空演化进行了同步测量。利用该同步超高速PD测量系统,揭示了分解产物发光随引线放电阶跃传播的变化规律。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel measurement and analysis system for investigation of partial discharge mechanism in SF6 Gas
An understanding of mechanism of partial discharge (PD) in SF6 gas is critical for diagnosis of PD in electric power equipment and contributes to the optimization of the design of electric power applications. However, for complexity of PD characteristics under non-uniform electric field, the mechanism of PD in SF6 is not comprehended enough. For this reason, we aim to reveal the PD mechanism by measuring current waveform, propagation characteristics and light emission of PD in SF6 gas and analyzing these data. For this purpose, we have developed excellent measurement and analysis techniques. For an analysis of PD under ac voltage application, not only PD waveforms but also PD propagation property is essential. We have constructed partial discharge current pulse waveform analysis (PD-CPWA) system. This system has enabled us to observe PD current sequentially at high speed and analyze the propagation of PD current pulse statistically. By the application of PD-CPWA system to diagnosis of PD activity due to the metallic particle in SF6, we could identify the particle type and size. On the other hand, for an analysis of PD under impulse voltage application, an ultra high-speed PD measurement by various methods is extremely important. In order to investigate the impulse PD mechanism spatially and temporally, the simultaneous measurement of current and light emission intensity waveforms, streak and still light emission images and temporal evolution of spectrum of PD light emission have been carried out. By using this synchronous ultra-high speed PD measurement system, we revealed the change of light emission from decomposition products depending on the step propagation of leader discharge.
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