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首页> 外文期刊>IEEE Transactions on Power Systems >Fault Current Estimation in Multi-Terminal HVdc Grids Considering MMC Control
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Fault Current Estimation in Multi-Terminal HVdc Grids Considering MMC Control

机译:考虑MMC控制的多端HVdc电网故障电流估计

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摘要

DC faults are critical events for the multi-terminal HVdc protection systems, where knowing the critical fault time is fundamental in the protections design. Existing literature analyzes the critical fault time with simulations or with complex analysis, requiring large computational effort and they are not robust to parameters variations. Furthermore, standard approaches rely on simplified modular multilevel converter (MMC) models neglecting the influence of converter control loops dynamic. As result, the prediction of the node voltages and especially the dc currents become increasingly inaccurate as bigger is the distance from the fault. This paper introduces a fault current estimation method in MMC-based multi-terminal dc (MTdc) grids, which improves the current differential equation based methodologies including the dynamics of power and dc voltage controllers. The proposed method gives the possibility of analyzing the fault current under different grid conditions (e.g., fault resistance and limiting inductor value). Furthermore, this method is extended to bipolar MTdc systems in case of pole-to-pole and pole-to-ground faults, and it is validated by means of simulations in PSCAD environment and standard CIGRE MTdc grid.
机译:直流故障是多端子HVdc保护系统的关键事件,在关键时刻了解关键故障时间是保护设计的基础。现有文献通过仿真或复杂分析来分析关键故障时间,这需要大量的计算工作,并且它们对参数变化不可靠。此外,标准方法依赖于简化的模块化多级转换器(MMC)模型,而忽略了转换器控制环路动态性的影响。结果,随着距故障的距离变大,节点电压,尤其是直流电流的预测变得越来越不准确。本文介绍了一种基于MMC的多端子直流(MTdc)电网中的故障电流估计方法,该方法改进了基于电流微分方程的方法,包括电源和直流电压控制器的动态特性。提出的方法提供了分析不同电网条件下的故障电流的可能性(例如,故障电阻和极限电感值)。此外,该方法可扩展到双极MTdc系统,以解决极对极和极对地故障,并通过在PSCAD环境和标准CIGRE MTdc网格中的仿真进行了验证。

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