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DC Grid Protection Method Based on Phase Planes of Single-End Common-and Differential-Mode Components

机译:直流电网保护方法基于单端共模组件的相平面

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摘要

This study develops a high-speed protection method for a modular multilevel converter (MMC)-based DC grids. The method utilizes the single-end derivative of common-mode (CM) and differential-mode (DM) currents to construct a protection phase-plane that divides different DC fault types into different regions. When the protection starts, the first sampling point that enters the fault regions of the protection phase-plane has the largest value. When five sampled data satisfy the corresponding fault conditions, the protection signal will be sent. This scheme ensures the rapidity of protection. CM and DM circuits of MMC, DC transmission line, and fault transition resistance under different fault types are derived following the principle of modulus decomposition. Finally, the synthesized equivalent circuits are obtained. On this basis, the expressions of CM and DM currents are derived to analyze the characteristics of fault currents on the protection phase-plane and provide the rules for distinguishing different fault types. A four-terminal MMC-based DC grid simulation model is established in PSCAD/EMTDC. The rapidness and reliability of the proposed protection method are then verified using different simulation cases. The proposed method is also validated on a scaled-down hardware setup in the laboratory.
机译:本研究开发了一种用于模块化多电平转换器(MMC)的直流网格的高速保护方法。该方法利用共模(CM)和差分模式(DM)电流的单端导数来构建将不同的DC故障类型分成不同区域的保护相面。当保护开始时,进入保护相面的故障区域的第一个采样点具有最大的值。当五个采样数据满足相应的故障条件时,将发送保护信号。该方案确保了保护的快速度。在模量分解原理之后导出了MMC,直流输电线路,直流传输线和不同故障类型的故障过渡电阻的CM和DM电路。最后,获得合成的等效电路。在此基础上,推导出CM和DM电流的表达,以分析保护相面上的故障电流的特性,并提供区分不同故障类型的规则。在PSCAD / EMTDC中建立了一种基于四端MMC的直流电网仿真模型。然后使用不同的仿真情况验证所提出的保护方法的快速和可靠性。在实验室的缩小硬件设置上还验证了该方法。

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