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Investigation of the gas-solid insulating system in DC GIS exposed to AC-DC mixed voltage for offshore bipole applications at ±525 kV DC

机译:在±525 kV DC下对海上Bopole应用的AC-DC混合电压暴露于AC-DC混合电压的瓦内GIS气固绝缘系统

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In order to develop offshore converter stations in the most space-saving way possible, high-voltage components should be gas-insulated, where feasible. This not only holds for the DC and the AC switchyard, but also the space between the main transformers and the converters. At this point in bipolar HVDC systems, the equipment is subjected to a mixed voltage stress consisting of AC and DC components. In this paper, the electric field stresses of typical AC-DC mixed voltages to the gas-solid insulation system of a DC GIS are determined by calculations using the finite element method. They are compared with the stresses in the case of pure direct voltage and different test voltages. It is found that the field stresses occurring in the gas-solid insulation system under AC-DC mixed voltage are always lower than the stresses under pure DC voltage, when considering the same maximal voltage value. Finally, the dielectric test requirements of the standards for converter transformers and bushings under AC-DC mixed voltage are compared with the recommendations for dielectric testing of gas-insulated DC systems under DC voltage.
机译:为了以最容易节省空间的方式开发海上转换器站,高压元件应气体绝缘,可行。这不仅适用于DC和AC Switchyard,还可以是主变压器和转换器之间的空间。此时,双极HVDC系统,该设备经受由AC和DC部件组成的混合电压应力。在本文中,通过使用有限元法计算通过计算确定典型的AC-DC混合电压与DC GIS气体固体绝缘系统的电场应力。它们与纯直接电压和不同测试电压的情况下的应力进行比较。结果发现,当考虑到相同的最大电压值时,在AC-DC混合电压下,在AC-DC混合电压下的气固绝缘系统中发生的现场应力总是低于纯直流电压下的应力。最后,将AC-DC混合电压下的转换器变压器和衬套标准的介电测试要求与DC电压下的气体绝缘直流系统的介电测试建议进行了比较。

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