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Time and Space Transition of DC Electric Field Distributions in Oil-Pressboard Composite Insulation in AC/DC Converter Transformer

机译:交/直流换流变压器油压板复合绝缘中直流电场分布的时空变化

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摘要

It is necessary to enhance an HVDC electrical insulation performance for further introduction of DC electric power systems. In AC/DC converter transformers under DC application, the electric field distributions are distorted due to the deposited charge on pressboard (PB). However, DC electric field stress in oil-PB composite insulation has not yet been clarified in detail. In this paper, we investigated the time and space dependent characteristics of DC electric field stress in oil from DC-on (initial state) to DC steady-state in oil-PB composite insulation systems. As a result, we quantitatively clarified that DC electric field stress strongly depends on the elapsed time and the location in the electric field space in oil. In particular, it was found that the most severe electric field stress in oil for the electrical insulation performance may emerge during the time transition process between initial DC-on to DC steady-state, using an insulated conductor lead and an actual AC/DC converter transformer model.
机译:为了进一步引入DC电力系统,必须增强HVDC电绝缘性能。在DC应用下的AC / DC转换器变压器中,电场分布由于压板(PB)上沉积的电荷而失真。但是,尚未对油-PB复合绝缘材料中的直流电场应力进行详细说明。在本文中,我们研究了油-PB复合绝缘系统中从直流导通(初始状态)到直流稳态的油中直流电场应力随时间和空间变化的特性。结果,我们定量地阐明了直流电场应力在很大程度上取决于流逝的时间和油在电场空间中的位置。特别是,发现使用绝缘导体导线和实际的AC / DC转换器,在初始DC-on到DC稳态之间的时间过渡过程中,可能会出现油中用于电绝缘性能的最严重的电场应力。变压器模型。

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