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Suppression of very fast transients in gas-insulated substation via terminal and capacitance components—feasibility study

机译:通过终端和电容组件抑制气体绝缘变电站中非常快速的瞬变—可行性研究

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摘要

Reportedly, the switching operation in a gas-insulated substation (GIS) can lead to deformation of transformer winding. Also, electromagnetic fields radiated because of switching operations get coupled to the control equipment or data cables present in the GIS. These problems during switching operations in the GIS depend on the wave shape of the very fast transient overvoltages (VFTOs) and the associated very fast transient currents (VFTCs). Available methods are utilizing ferromagnetic rings and resistors to suppress the stresses created by very fast transient (VFT) from the source side. These equipment are mounted on the conductors linked to the disconnector. However, current methods are only applicable before installation period and during the substation design stage. The aim of this paper is to investigate feasible methods for mitigation of the overvoltage magnitude of VFT and suppression of the resonant frequencies amplitude at the power transformer. The proposed method utilizes terminal and capacitance components to suppress VFTs in GIS. Its advantages are their simplicity and low cost of implementation along with producing minimal changes in the installed GIS. The effectiveness of the proposed method to mitigate overvoltage magnitude and resonant frequencies amplitude of VFT is presented via simulation. In addition, the amplitude and frequency spectrum of the VFTO and VFTC at the various locations have been analyzed in this paper. Copyright © 2011 John Wiley & Sons, Ltd.
机译:据报道,在气体绝缘变电站(GIS)中进行开关操作可能会导致变压器绕组变形。而且,由于开关操作而辐射的电磁场会耦合到GIS中存在的控制设备或数据电缆。 GIS开关操作期间的这些问题取决于非常快速的瞬态过电压(VFTO)的波形以及相关的非常快速的瞬态电流(VFTC)。可用的方法是利用铁磁环和电阻器来抑制来自源极的非常快速的瞬态(VFT)所产生的应力。这些设备安装在与隔离开关相连的导体上。但是,当前方法仅在安装期之前和变电站设计阶段才适用。本文的目的是研究减轻VFT的过电压幅度和抑制电力变压器谐振频率幅度的可行方法。所提出的方法利用端子和电容分量来抑制GIS中的VFT。它的优点是简单,实现成本低,并且在已安装的GIS中产生的更改最少。通过仿真验证了所提方法减轻VFT过电压幅值和谐振频率幅值的有效性。此外,本文还分析了VFTO和VFTC在不同位置的振幅和频谱。版权所有©2011 John Wiley&Sons,Ltd.

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