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Transient Overvoltage Study on LCC-MMC Hybrid UHVDC Transmission System

机译:LCC-MMC混合特高压直流输电系统的暂态过电压研究

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This paper is a study on the transient overvoltage across the converter valve in the hybrid ultra high voltage direct current(UHVDC) transmission system in which the rectifier adopts Line commutated Converter(LCC), and the inverter adopts voltage Source Converter(VSC). The arrester configuration for hybrid UHVDC transmission system is proposed, and the electromagnetic transient model of hybrid UHVDC transmission system is built. Based on the model, the overvoltage and arrester stress across valve in the hybrid UHVDC transmission system are obtained in the conditions of three-phase grounded fault at the ac system, single-phase grounded fault at valve side of upper bridge converter transformer and dc line grounded fault. It shows that the overvoltage and the stress of arresters across converter valve is very large in the conditions of single-phase grounded fault at valve side of upper bridge converter transformer and it is a decisive case for the overvoltage calculation of converter valve and the stress design of the arrester across the converter valve. Moreover, the effect of protection strategy on overvoltage is studied, and the investigation shows that the MMC converter adopts the strategy of controlling the DC voltage to zero, which can reduce the stress of arrester across the converter valve in the condition of single-phase grounded fault at valve side of upper bridge converter transformer. The study can provide the basis for insulation coordination of hybrid UHVDC transmission system.
机译:本文研究了在混合超高压直流输电系统中,整流器采用线路换向转换器(LCC),逆变器采用电压源转换器(VSC)的混合换流阀两端的瞬态过电压。提出了混合特高压直流输电系统的避雷器配置,建立了混合特高压直流输电系统的电磁暂态模型。基于该模型,在交流系统三相接地故障,上桥换流变压器和直流线路阀侧单相接地故障的条件下,获得了混合特高压直流输电系统中跨阀的过电压和避雷器应力。接地故障。结果表明,在上桥换流变压器阀侧单相接地故障情况下,换流阀跨接器的过电压和应力非常大,是换流阀过压计算和应力设计的决定性案例。跨过转换阀的避雷器。此外,研究了保护策略对过电压的影响,研究表明MMC变频器采用将直流电压控制为零的策略,可以在单相接地的情况下减小跨过换流阀的避雷器应力。上桥变换器变压器的阀侧发生故障。该研究可为混合特高压直流输电系统的绝缘配合提供依据。

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