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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Modelling of supply voltage frequency effect on partial discharge repetition rate and charge amplitude from AC to DC at room temperature
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Modelling of supply voltage frequency effect on partial discharge repetition rate and charge amplitude from AC to DC at room temperature

机译:在室温下对局部放电重复率和电荷幅度的电源电压频率效应建模

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This paper has the purpose to derive an analytical model ("continuum" model) able to describe the behavior of partial discharge (PD) repetition rate and amplitude, occurring in a cavity embedded in polymeric insulation, as a function of the frequency of the supply voltage, going from AC power supply frequency, 50-60 Hz, to DC. In the range between DC and 50-60 Hz focus is made on data coming from tests under AC sinewave with very low frequency (VLF) such as 0.1 Hz and 0.01 Hz, which are commonly used for cable testing. It is shown that the proposed "continuum" model can provide reasonably good fit to the experimental results obtained in the range DC to 60 Hz, regarding PD repetition rate and amplitude. To reach such result, the equivalent circuit is modified from that commonly used and made by fully-capacitive or resistive components, in order to take into account the change of polarization mechanisms which, depending on dielectric material, may play a non-negligible role to establish the repetition rate from low frequency to DC power supply. In addition, the residual voltage after a PD event has to vary with frequency to reach good fitting. Also, it is shown that PD amplitude under DC and VLF can be lower than under AC 50-60 Hz due to the delay time of the firing electron, thus experimental PD amplitude varies with frequency depending on material and defect typology and location.
机译:本文的目的是推导出分析模型(“连续统一体”模型)能够描述在聚合物绝缘嵌入的腔内的腔内放电(Pd)重复率和幅度的行为,作为供应频率的函数电压,从交流电源频率,50-60 Hz,DC。在DC和50-60Hz之间的范围内,对来自AC SINEWAVE下的测试的数据,具有非常低频(VLF),例如0.1Hz和0.01Hz,这通常用于电缆测试。结果表明,所提出的“连续内”模型可以提供合理良好的拟合在DC到60Hz的范围内获得的实验结果,关于PD重复率和幅度。为了达到这种结果,等效电路由完全电容或电阻组件常用和制造的等效电路,以便考虑到偏振机构的变化,这取决于介电材料,可能起到不可忽略的作用从低频到直流电源建立重复率。此外,PD事件后的剩余电压必须随频率而变化以达到良好的配件。此外,显示DC和VLF下的PD幅度可能低于AC 50-60Hz,由于射击电子的延迟时间,因此实验PD幅度随频率而根据材料和缺陷类型和位置而变化。

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