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Analytical Analysis and Protection Setting of Taveling Wave Protection in Hybrid HVDC System

机译:混合高压直流输电系统行波保护的分析与保护整定

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The hybrid HVDC system, in which the rectifier is made up of LCC and the converter is composed of MMC, has quite different characteristics from the symmetrical LCC-HVDC systems. Therefore, it is necessary to study the protection method for hybrid HVDC transmission lines. This paper develops a reduced analytical model of LCC-MMC-HVDC system for DC line fault transient analysis. The analytical models of internal and external fault are established in frequency domain and applicable to the first fault traveling wave. Analysis illustrates that it has high accuracy compared with the simulation result. Based on the reduced model, the analytical setting method of traveling wave protection is put forward, which considers the randomness of sampling. Furthermore, the performance of traveling wave protection is analyzed based on the analytical analysis, and the result shows that traveling wave protection performances well for the MMC side, but it has quite poor ability of resistance at LCC side of the transmission line.
机译:与由对称LCC-HVDC系统组成的混合HVDC系统相比,其特点是整流器由LCC组成,而转换器由MMC组成。因此,有必要研究高压直流输电线路的保护方法。本文为直流线路故障暂态分析建立了简化的LCC-MMC-HVDC系统分析模型。在频域上建立了内部和外部故障的解析模型,适用于第一类故障行波。分析表明,与仿真结果相比,该算法具有较高的精度。在简化模型的基础上,提出了考虑采样随机性的行波保护解析设置方法。此外,在分析的基础上对行波保护的性能进行了分析,结果表明,行波保护在MMC侧性能良好,但在传输线LCC侧的抵抗能力却很差。

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