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Study on Multi-terminal flexible DC Pilot Line Protection Based on the Transient Voltages Amplitude Ratio and the Transient Current Characteristics

机译:基于暂态电压幅度比和暂态电流特性的多端子柔性直流先导线路保护研究

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DC line protection technology is one of the key technical issues to ensure the reliability of flexible DC grids supply. In the practice of flexible DC engineering, DC reactors are installed at both ends of the DC line to reduce the fault hazard and improve the survivability from the fault crossing of the converter station and the grid fault. The line boundary feature provides a breakthrough for the study of the line protection of the flexible DC grid. In this paper, the DC reactors installed at both ends of the line in the DC grid are used as the line boundaries. The transient characteristics of the internal faults and external faults are analyzed. A pilot line protection principle based on the amplitude ratio of the voltage wavelet transform detail coefficient on both sides of the DC reactor and the transient current fault characteristics which could quickly distinguish the internal faults and external faults was proposed. A four-terminal MMC type flexible DC grid simulation model was built on the PSCAD/EMTDC simulation platform, and the simulation was verified. A large number of simulation examples show that the protection scheme is fast, adapt to transition resistance, and is not affected by the inverter blocking. It can be used as the main protection for flexible DC transmission lines.
机译:直流线路保护技术是确保灵活的直流电网供电可靠性的关键技术问题之一。在灵活的直流工程实践中,直流电抗器安装在直流线路的两端,以减少故障风险并提高换流站与电网故障之间的交叉影响。线路边界功能为柔性直流电网的线路保护研究提供了突破。在本文中,将安装在直流电网中线路两端的直流电抗器用作线路边界。分析了内部故障和外部故障的暂态特性。提出了一种基于直流电抗器两侧电压小波变换细节系数的振幅比和能够快速地区分内部故障和外部故障的暂态电流故障特性的先导线路保护原理。在PSCAD / EMTDC仿真平台上建立了四端子MMC型柔性直流电网仿真模型,并进行了仿真验证。大量的仿真实例表明,该保护方案是快速的,适应过渡电阻的,不受逆变器阻塞的影响。可用作柔性直流输电线路的主要保护装置。

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