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Impact of axial displacement on power transformer FRA signature

机译:轴向位移对电力变压器FRA签名的影响

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Frequency response analysis (FRA) is gaining global popularity in detecting power transformer winding movement and core deformation due to the development of FRA test equipment. However, because FRA relies on graphical analysis, interpretation of its signatures is still a very specialized area that calls for skillful personnel to detect the sort and likely place of the fault as so far, there is no reliable standard code for FRA signature classification and quantification. This paper investigates the impact of transformer winding axial displacement on its FRA signature as a step toward the establishment of reliable codes for FRA interpretation. In this context a detailed model for a single-phase transformer is simulated using 3D finite element analysis to emulate a close to real transformer. The impact of axial displacement on the electrical distributed parameters model that are calculated based on the transformer physical dimension is examined to investigate how model's parameters including inductance and capacitance matrices change when axial displacement takes place within a power transformer.
机译:由于FRA测试设备的发展,频率响应分析(FRA)在检测电力变压器绕组运动和铁芯变形方面获得了全球性的欢迎。但是,由于FRA依赖于图形分析,因此对其签名的解释仍然是一个非常专业的领域,需要熟练的技术人员来检测故障的种类和可能的位置,到目前为止,对于FRA签名的分类和量化没有可靠的标准代码。本文研究了变压器绕组轴向位移对其FRA签名的影响,以此为建立可靠的FRA解释规范迈出了一步。在这种情况下,使用3D有限元分析模拟单相变压器的详细模型,以模拟接近真实的变压器。研究了轴向位移对基于变压器物理尺寸计算出的电分布参数模型的影响,以研究当电力变压器内部发生轴向位移时,模型参数(包括电感和电容矩阵)如何变化。

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