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Experimental research of vibration characteristics of shunt reactor

机译:并联电抗器振动特性的实验研究

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The widely developed and used HVDC transmission systems will cause DC bias phenomenon occurred in some electromagnetic facilities of power grids with the results of several negative effects on the secure and reliable operation, including vibrations and noises. However, there has been few studies regarding the influence DC bias has on shunt reactors. To fully explore the vibration characteristic of a shunt reactor and then reduce its vibration, this paper discusses the experimental results of a shunt reactor under different voltages, currents and additional DC currents. Through the experiment and following analysis, we found that the vibration intensity rises with the increase of voltage, current and additional DC current and the frequency spectrum of vibration changes as well. Then a characteristic quantity of the vibration frequency is introduced to reflect the working condition of a shunt reactor. This experimental analysis is helpful for developing on-line monitoring system for shunt reactors.
机译:广泛开发和使用的高压直流输电系统会在电网的某些电磁设施中引起直流偏置现象,对包括振动和噪声在内的安全可靠运行产生若干负面影响。但是,关于直流偏置对并联电抗器的影响的研究很少。为了充分研究并联电抗器的振动特性并降低其振动,本文讨论了并联电抗器在不同电压,电流和附加直流电流下的实验结果。通过实验和后续分析,我们发现振动强度随着电压,电流和附加直流电流的增加而增加,并且振动频谱也发生变化。然后引入振动频率的特征量以反映并联电抗器的工作状态。该实验分析有助于开发并联电抗器的在线监测系统。

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