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The STUDY on vibration detection and diagnosis FOR distribution transformer in operation

机译:分配变压器振动检测与诊断研究

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This paper makes in-depth research on the vibration of distribution transformer in the operation. It points out the vibration of the distribution transformer mainly from the iron core and winding, and sets up the mechanical model of the iron core and winding. The ANSYS software is used to conduct the finite element simulation for the enclosure vibration affected by the vibration of internal transformer. The results show that the most serious vibration occurs in the central of the distribution transformer tank's top part, so this part should be considered as the most important for the vibration test of distribution transformer. This experimental study on the physical model of distribution transformer, and arranges several acceleration sensors in the distribution transformer tank according to the results of the simulation calculation is completed. Meanwhile, the acceleration sensors are arranged in the iron core after swing the core of distribution transformer, in order to analyse the spread characteristic of the distribution transformer's internal vibration. The real-time data from sens or are collected by NI PXIe - 4499 data acquisition card, which are effectively controlled by NI PXIe - 8133 controller, and NI Labview is used to develop background software for operation analysis and diagnosis. Through constructing test loop, it simulates the different operation conditions of the distribution transformer, such as no-loading, part-loading and full-loading. It analyses the influencing factors of distribution transformer operation vibration from the perspectives of core and winding, e specially the fastening degree of the core and winding and the dc bias in the operation process. The variation test of distribution transformer in operation brings about several conclusions. If the vibration amplitude of tank top center increases sharply, and the vibration frequency is mostly odd times to power frequency, then it may be the problem of loose core. If vibration amplitude- of tank top center increases considerably, and most of the vibration frequency is even times to the power frequency, it may be the problem of loose winding. Moreover, in the fastening condition, the dc bias is easier to intensify the vibration of distribution transformers than the load current.
机译:本文对运行中配电变压器的振动进行了深入研究。它主要从铁芯和绕组中指出了配电变压器的振动,并建立了铁芯和绕组的机械模型。 ANSYS软件用于对受内部变压器振动影响的机箱振动进行有限元模拟。结果表明,配电变压器罐顶部中央的中央振动发生了最严重的振动,因此该部分应被视为对分配变压器的振动试验最重要的。该实验研究对分配变压器的物理模型,并根据模拟计算的结果排列在配电变压器箱中的几个加速度传感器。同时,加速度传感器在摆动分配变压器的芯之后布置在铁芯中,以分析配电变压器内部振动的扩散特性。来自SENS或由NI PXIE-4499数据采集卡收集的实时数据,由NI PXIe-8133控制器有效控制,NI LabVIEW用于开发用于操作分析和诊断的背景软件。通过构造测试回路,它模拟了分配变压器的不同操作条件,例如无负载,零件加载和全负载。从核心和绕组的角度分析了分配变压器操作振动的影响因素,特别是核心和绕组的紧固程度和操作过程中的直流偏置。运行中分配变压器的变化试验带来了几个结论。如果罐顶部中心的振动幅度急剧增加,并且振动频率大多是功率频率的奇数时间,那么它可能是松散核心的问题。如果振动幅度的罐顶部中心显着增加,并且大多数振动频率是甚至是功率频率的时间,它可能是绕组松动的问题。此外,在紧固条件下,DC偏置更容易加强分布式变压器的振动而不是负载电流。

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