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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Correlation analysis between formation process of SF6 decomposed components and partial discharge qualities
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Correlation analysis between formation process of SF6 decomposed components and partial discharge qualities

机译:SF 6 分解组分的形成过程与局部放电质量的相关性分析

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摘要

To obtain relationship between concentration of SF6 decomposed characteristic components (or their concentration ratio) during the formation process and partial discharge qualities and pulse repetition rate, this paper used needle-plate electrode to simulate outthrust insulation fault and conducted a serial of experiments. First, the SF6 decomposition characteristic under different PD strengths is obtained. Then this paper defines average discharge qualities per second as QSEC. It considers both apparent discharge qualities and discharge pulse repetition rate, and analyzes the relation feature between SF6 decomposition characteristic (both concentration of component and their effective formation rates RRMS) and QSEC. Besides, it proposes C(SO2F2)/C(SOF2) as the energy characteristic ratio (ER) to represent PD energy, and defines the effective energy characteristic ratio as (ERRMS). Moreover, it achieves the inner correlation feature between QSEC and all the characteristic component concentration, the RRMS of each characteristic component and ERRMS. The results show that: since number of C atoms from stainless steel surface and content of trace H2O and O2 in gas chamber were limited, both decomposed component concentration and component concentration ratio accords with the famous "Logistic Population Model" growth trend in ecology, which means they present ?????????S?????????-curve increase with QSEC. The proposed ER can effectively indicate the amount of PD energy and the defined ERRMS can objectively reveal the variance regularity of PD energy with QSEC. Hence, the correlation mathematic formula between ERRMS and QSEC is obtained and ERRMS can be used as the new characteristic parameter to represent PD energy. It establishes the foundation for the further fault diagnosi- research.
机译:为了获得形成过程中SF 6 分解的特征成分的浓度(或其浓度比)与局部放电质量和脉冲重复率之间的关系,本文使用针板式电极模拟了外推绝缘故障和进行了一系列实验。首先,获得了不同PD强度下的SF 6 分解特性。然后本文将每秒的平均放电质量定义为Q SEC 。它同时考虑了表观放电质量和放电脉冲重复率,并分析了SF 6 分解特性(组分浓度和有效形成率RRMS)与Q SEC 。此外,提出以C(SO 2 F 2 )/ C(SOF 2 )作为能量特征比(ER)来表示PD能量,并将有效能量特征比定义为(ER RMS )。此外,它还实现了Q SEC 与所有特征成分浓度,每个特征成分的RRMS和ERRMS之间的内在关联特征。结果表明:由于不锈钢表面碳原子数量以及气室内痕量H 2 O和O 2 的含量受到限制,分解后的成分浓度和成分浓度比符合生态学中著名的“ Logistic人口模型”的增长趋势,这意味着它们呈现出???????????????随Q SEC的增加曲线。提出的ER可以有效地指示PD能量,而定义的ER RMS 可以客观地揭示PD能量与Q SEC 的方差规律。因此,得到了ER RMS 和Q SEC 之间的相关数学公式,并且可以将ER RMS 用作表示PD能量的新特征参数。 。它为进一步的故障诊断奠定了基础。

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