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Impact of VSC Converter Topology on Fault Characteristics in HVDC Transmission Systems

机译:VSC转换器拓扑对高压直流输电系统故障特性的影响

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摘要

This work presents the outcome of a comprehensive study that assesses the transient behaviour of two high voltage direct current (HVDC) networks with similar structures but using different converter topologies, termed two-level and half-bridge (HB) modular multilevel converter (MMC). To quantify the impact of converter topology on DC current characteristics a detailed comparative study is undertaken in which the responses of the two HVDC network transients during dc side faults are evaluated. The behaviour of the HVDC systems during a permanent pole-to-pole and pole-to-ground faults are analysed considering a range of fault resistances, fault positions along the line, and operational conditions as a prerequisite. Fast Fourier Transform (FFT) has been conducted analysing di/dt for both converter architecture and fault types taking into consideration sampling frequency of 96 kHz in compliance with IEC-61869 and IEC-61850:9-2 for DC-side voltages and currents.
机译:这项工作提出了一项全面研究的结果,该研究评估了具有相似结构但使用不同转换器拓扑的两个高压直流(HVDC)网络的瞬态行为,称为二电平和半桥(HB)模块化多电平转换器(MMC) 。为了量化转换器拓扑结构对直流电流特性的影响,进行了详细的比较研究,其中评估了直流侧故障期间两个HVDC网络瞬态的响应。考虑到一系列的故障电阻,沿线的故障位置以及运行条件为前提,分析了永久性极对极和极对地故障期间HVDC系统的行为。快速傅立叶变换(FFT)已经针对转换器架构和故障类型进行了di / dt分析,同时考虑了针对DC侧电压和电流的符合IEC-61869和IEC-61850:9-2的96 kHz采样频率。

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