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A single-ended fault location method for DC lines in bipolar MMC-HVDC system

机译:双极MMC-HVDC系统中直流线路的单端故障定位方法

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摘要

Fault location of DC grid is one of the crucial techniques for safe and reliable operation of power systems. This paper presents a single-ended fault location method for DC lines in bipolar high-voltage direct current transmission based on modular multi-level converter (MMC-HVDC) system, which focuses on short-distance DC lines. Firstly, the fault path after tripping is considered to be equivalent to a two-order RLC series circuit, and the initial voltage of the fault path is provided by the residual voltage of MMC submodule capacitors. Then, the differential equation of the fault path is established in time domain. Finally, by sampling the voltage and current signal of single-end MMC submodule capacitor and the voltage signal of the MMC bridge arm inductor, the fault distance, as well as the fault resistance, is obtained. A bipolar MMC-HVDC model is built by PSCAD/EMTDC, and the proposed method is verified by MATLAB. The simulation results show that the proposed method can accurately locate the fault position and is almost immune to the fault resistance.
机译:DC网格的故障位置是电力系统安全可靠运行的关键技术之一。本文基于模块化多级转换器(MMC-HVDC)系统,对双极高压直流传输中的直流线路直流线路的单端故障定位方法,专注于短距离直流线。首先,认为跳闸后的故障路径相当于两个阶RLC系列电路,并且通过MMC子模块电容器的剩余电压提供故障路径的初始电压。然后,在时域中建立故障路径的微分方程。最后,通过对单端MMC子模块电容器的电压和电流信号进行采样和MMC桥臂电感的电压信号,获得故障距离以及故障电阻。 PIPOLAR MMC-HVDC模型由PSCAD / EMTDC构建,并通过MATLAB验证所提出的方法。仿真结果表明,该方法可以准确地定位故障位置,几乎免受故障阻力。

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