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Pilot protection scheme for transmission line of a hybrid HVDC system based on polarity characteristics of current and voltage fault components

机译:基于电流和电压故障组件极性特性的混合HVDC系统传输线的导频保护方案<?显示[AQ =“ID =”Q1“”?>

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摘要

A hybrid high-voltage direct current (HVDC) system comprises a line commutated converter (LCC) at the rectifier side and a voltage source converter (VSC) at the inverter side, combining advantages of both LCC and VSC systems. However, the asymmetric converters at both ends of line constrain the direct application of line protections used for conventional HVDC systems. This study proposes a polarity-based pilot transmission line protection for hybrid HVDC systems. By digitising the current and voltage fault components, their polarity characteristics are extracted to identify the transmission line fault, which may eliminate the influence of the fault component magnitude differences caused by different converter structures and control strategies. Simulation results show that the proposed protection is valid and feasible and is capable of distinguishing fault with large transition resistance.
机译:混合高压直流(HVDC)系统包括在整流器侧的线路换向转换器(LCC)和逆变器侧的电压源转换器(VSC),组合LCC和VSC系统的优点。然而,线路两端的非对称转换器限制了用于传统HVDC系统的线路保护的直接应用。本研究提出了一种用于混合HVDC系统的极性基本传输线路保护。通过数字化电流和电压故障组件,提取它们的极性特性以识别传输线路故障,这可能消除不同转换器结构和控制策略引起的故障组分幅度差异的影响。仿真结果表明,该保护是有效可行的,并且能够区分具有大过渡阻力的故障。

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