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Damping Performance Analysis of Power System Electromechanical Oscillations Considering the Proportion and Position of PV Generations

机译:考虑PV世代比例和位置的电力系统机电振荡性能分析

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With the frequent occurrence of electromechanical oscillation in the power systems, the fast response characteristics of the photovoltaic (PV) power generation system are used to actively damp the electromechanical oscillation in the power system. The proportion and position of PV generations in the system are usually different, therefore, the dynamic process of PV damping the grid electromechanical oscillation will also be changed. This paper divides the conventional system into two parts: the power system and the infinite power grid, the steady-state output of the PV generation system is equivalent to the active output current Id0 and the reactive output current Iq0. The analysis conclusions of these two parts shows that: the inertia level, synchronization and damping effect of the conventional system will increase with the increase of Id0, and first decrease with the increase of Iq0, then increase rapidly, and then decrease. Moreover, the closer the PV module to the electromechanical oscillation source, the better the oscillation damping effect. Finally, this paper verifies the conclusion correctness through MATLAB/Simulink.
机译:随着动力系统中的机电振荡频繁发生,光伏(PV)发电系统的快速响应特性用于主动阻尼电力系统中的机电振荡。 PV世代在系统中的比例和位置通常是不同的,因此,PV阻尼电网机电振荡的动态过程也将改变。本文将传统系统分为两部分:电力系统和无限电网,PV生成系统的稳态输出相当于有源输出电流ID0和无功输出电流IQ0。这两个部分的分析结论表明:传统系统的惯性水平,同步和阻尼效果随着ID0的增加而增加,并且随着IQ0的增加,首先减少,然后迅速增加,然后减少。而且,PV模块越靠近机电振荡源,振荡阻尼效果越好。最后,本文通过Matlab / Simulink验证了结论正确性。

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