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Hot Spot Temperature and Grey Target Theory-Based Dynamic Modelling for Reliability Assessment of Transformer Oil-Paper Insulation Systems: A Practical Case Study

机译:基于热点温度和灰色目标理论的动态模型用于变压器油纸绝缘系统可靠性评估:案例研究

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This paper develops a novel dynamic correction method for the reliability assessment of large oil-immersed power transformers. First, with the transformer oil-paper insulation system (TOPIS) as the target of evaluation and the winding hot spot temperature (HST) as the core point, an HST-based static ageing failure model is built according to the Weibull distribution and Arrhenius reaction law, in order to describe the transformer ageing process and calculate the winding HST for obtaining the failure rate and life expectancy of TOPIS. A grey target theory based dynamic correction model is then developed, combined with the data of Dissolved Gas Analysis (DGA) in power transformer oil, in order to dynamically modify the life expectancy calculated by the built static model, such that the corresponding relationship between the state grade and life expectancy correction coefficient of TOPIS can be built. Furthermore, the life expectancy loss recovery factor is introduced to correct the life expectancy of TOPIS again. Lastly, a practical case study of an operating transformer has been undertaken, in which the failure rate curve after introducing dynamic corrections can be obtained for the reliability assessment of this transformer. The curve shows a better ability of tracking the actual reliability level of transformer, thus verifying the validity of the proposed method and providing a new way for transformer reliability assessment. This contribution presents a novel model for the reliability assessment of TOPIS, in which the DGA data, as a source of information for the dynamic correction, is processed based on the grey target theory, thus the internal faults of power transformer can be diagnosed accurately as well as its life expectancy updated in time, ensuring that the dynamic assessment values can commendably track and reflect the actual operation state of the power transformers.
机译:本文为大型油浸式电力变压器的可靠性评估开发了一种新颖的动态校正方法。首先,以变压器油纸绝缘系统(TOPIS)为评估目标,以绕组热点温度(HST)为核心,根据威布尔分布和阿雷尼乌斯反应建立了基于HST的静态老化失效模型。为了描述变压器的老化过程并计算绕组的HST,以获得TOPIS的故障率和预期寿命。然后,开发了基于灰色目标理论的动态校正模型,并结合变压器油中的溶解气体分析(DGA)数据,以动态修改所建立的静态模型计算出的预期寿命,从而使两者之间的对应关系成为可能。可以建立TOPIS的州等级和预期寿命校正系数。此外,引入了预期寿命损失恢复因子以再次校正TOPIS的预期寿命。最后,对运行中的变压器进行了实际的案例研究,其中可以得出引入动态校正后的故障率曲线,以评估该变压器的可靠性。该曲线表现出更好的跟踪变压器实际可靠性水平的能力,从而验证了所提方法的有效性,为变压器可靠性评估提供了新的途径。这一贡献为TOPIS的可靠性评估提供了一种新颖的模型,其中基于灰色目标理论处理DGA数据作为动态校正的信息源,从而可以准确地诊断出变压器内部故障。以及其预期寿命的及时更新,确保动态评估值可以令人满意地跟踪和反映电力变压器的实际运行状态。

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