Internal Protection of Transformer Windings Against Transeint Surges Using ZnO Varistors

R. Shariatinasab, Z. Ejtemaee, J. Gholinezhad
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Abstract

Power system overvoltages due to switching, lightning and other disturbances are the main problem for designers of the power transformers. Once some frequencies of the incoming surges match with some of the natural frequencies of transformer winding, the resonance phenomenon is expected in transformer winding. The resonant overvoltages may destroy the insulation between turns and cause to insulation failure or transmformer damage. In this paper, the transformer winding is modeled based on the lattice diagram concept with variable parameters and the IEEE model of surge arresters has been utilized in order to perform the simulations.  For internal protection of transformer windings, it is assumed that ZnO varistors are installed in parallel to the winding turns. Also the effect of ZnO varistors in reducing the voltage stress across the transformer winding has been investigated for the case of grounded and insolated nutral winding.
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用ZnO压敏电阻对变压器绕组瞬变浪涌的内部保护
开关、雷电等干扰引起的电力系统过电压是电力变压器设计人员面临的主要问题。一旦输入浪涌的某些频率与变压器绕组的某些固有频率相匹配,就会在变压器绕组中产生谐振现象。谐振过电压会破坏匝间绝缘,导致绝缘失效或变压器损坏。本文基于变参数晶格图概念对变压器绕组进行建模,并采用IEEE避雷器模型进行仿真。对于变压器绕组的内部保护,假设ZnO压敏电阻与绕组匝并联安装。此外,还研究了ZnO压敏电阻在接地和绝缘中性绕组情况下降低变压器绕组电压应力的作用。
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