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Dynamic interaction between synchronous machine and DC-power-modulated LCC in electromechanical timescale

机译:机电时间尺度同步电机与直流电调制LCC的动态交互

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摘要

Active power modulation of line-commutated converter (LCC)-based high-voltage direct current (HVDC) system is increasingly utilised, especially for the case of damping low-frequency oscillation associated with synchronous machine (SM) in electromechanical timescale (around 1 Hz). Many papers have tried to analyse the mechanism of damping effects, but almost rely on numerical studies, which cannot reveal the dynamic interaction between SM and DC-power-modulated LCC. This study proposes a small-signal model of DC-power-modulated LCC based on motion equation concept. With this model, analytical investigation of low-frequency oscillation from the scope of damping and synchronising powers is presented. Comparisons of analytical results and eigenvalues draw some general conclusions which offer insight into the dynamic behaviour. By examining the case of an SM connected to a DC-power-modulated LCC, simulations in MATLAB/Simulink are conducted to verify the analytical results.
机译:基于线路换向转换器(LCC)的高压直流(HVDC)系统的电力调制越来越多地利用,特别是对于阻尼与机电时间尺度(左右1 Hz的同步机(SM)相关的低频振荡的情况)。许多论文试图分析阻尼效应的机制,但几乎依赖于数值研究,这不能揭示SM和DC功率调制的LCC之间的动态相互作用。本研究提出了一种基于运动方程概念的直流电调制LCC的小信号模型。通过这种模型,提出了从阻尼范围和同步功率范围的低频振荡的分析调查。分析结果和特征值的比较得出了一些关于动态行为的洞察力的一般结论。通过检查连接到DC功率调制的LCC的SM的情况,进行MATLAB / SIMULINK中的模拟以验证分析结果。

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