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A DC Fault Protection Scheme for MMC-HVDC Grids Using New Directional Criterion

机译:使用新的方向标准MMC-HVDC网格的直流故障保护方案

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摘要

To meet the ultra-fast, selective, and reliable requirements of the DC fault protection, a protection scheme for modular multilevel converter based HVDC grids is proposed in this paper. The protection scheme is consisted of main protection, directional pilot protection, and faulty pole identification. The new fault directional criterion is achieved by employing the surge arriving time difference of line-mode backward traveling wave and line-mode forward traveling wave. This criterion is valid even when the fault current limiting reactors (FCLRs) are installed at the converter side of DC bus. The main protection without communication and complex computation relies on co-operation of the derivative of line-mode forward traveling wave and the directional criterion. The directional pilot protection by comparing the double end directional criteria can be used as a backup protection. The accumulation of zero-mode component is adopted to discriminate the faulty pole. Simulations have demonstrated that the proposed scheme is capable of identifying various types of faults with different fault resistances at different positions. The robustness analysis shows that the protection scheme presented is not sensitive to the FCLR size, noise environment, sampling frequency, and the operation of hybrid DC circuit breakers.
机译:为了满足直流故障保护的超快速,选择性和可靠的要求,本文提出了一种基于模块化多级转换器的HVDC网格的保护方案。保护方案包括主要保护,定向​​导频保护和故障杆识别。通过采用线路模式向后行驶波和线路模式前行波的浪涌到达时间差来实现新的故障方向标准。即使在DC总线的转换器侧安装故障电流限制电抗器(FCLRS),此标准也是有效的。没有通信的主要保护和复杂的计算依赖于线路模式前向行驶波的导数的合作和方向标准。通过比较双端方向标准的定向导频保护可用作备用保护。采用零模式分量的累积来区分故障杆。仿真已经证明,所提出的方案能够在不同位置处具有不同故障电阻的各种故障。稳健性分析表明,所提供的保护方案对FCLR尺寸,噪声环境,采样频率和混合直流断路器的操作不敏感。

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