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HVDC electrical insulation performance based on charge activity in oil-pressboard composite insulation structures

机译:基于电荷活动的油压板复合绝缘结构的HVDC电绝缘性能

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摘要

For more reliable HVDC power transmission systems, it is necessary to enhance HVDC electrical insulation performance in power equipment such as an oil-immersed AC/DC converter transformer. In this paper, the electric field distributions under AC, DC steady-state (DC-SS) and DC polarity reversal (DC-PR) conditions are discussed in oil-pressboard (PB) composite insulation structures. Firstly, based on discussion about the charge accumulation and charge dynamics at oil/PB interfaces, the contribution ratio of deposited charges under DC-SS to the following emerging electric stresses at DC-PR conditions are quantitatively clarified. Secondly, we found that the DC electric field distributions could significantly be controlled by PB arrangement in oil. In particular, both PB configurations and the conductivity ratios of oil and PB would play critical roles to determine electric field distribution, under DC-SS conditions. Furthermore, using an actual AC/DC converter transformer structure, electrical insulation performances under various testing conditions such as AC, DC-SS and DC-PR conditions were comparatively investigated. It was concluded that the most critical testing condition against breakdown strength could be the DC-PR conditions under the higher conductivity ratio of oil and PB.
机译:对于更可靠的HVDC输电系统,有必要增强电力设备(如油浸式AC / DC转换器)中的HVDC电绝缘性能。本文讨论了油压板(PB)复合绝缘结构在交流,直流稳态(DC-SS)和直流极性反转(DC-PR)条件下的电场分布。首先,基于对油/ PB界面电荷积累和动力学的讨论,定量阐明了DC-SS条件下沉积电荷对DC-PR条件下随后出现的电应力的贡献率。其次,我们发现,油中的PB排列可以显着控制DC电场分布。特别是,在DC-SS条件下,PB结构以及油和PB的电导率比率都将对确定电场分布起关键作用。此外,使用实际的AC / DC转换器变压器结构,比较研究了各种测试条件(例如AC,DC-SS和DC-PR条件)下的电绝缘性能。得出的结论是,对于击穿强度而言,最关键的测试条件可能是在较高的油和PB导电比下的DC-PR条件。

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