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Transient Stability Assessment of Large Scale Grid-Connected Photovoltaic on Transmission System

机译:大型并网光伏发电系统的暂态稳定性评估

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The purpose of this study is to measure the transient stability of large scale grid-connected photovoltaic in transmission line. This research used a transient stability analysis to measure the stability of the power angle stability, frequency stability, voltage stability, active power response, reactive power response of the synchronous generator and critical clearing time. It analyzed during the occurrence of the three-phase short-circuit interruption and the change in PV system power injection. This simulations was conducted in four conditions namely a system without PV and systems with solar radiation intensity 1000 W/m2, 700 W/m2 and 500 W/m2 respectively. The study used a large test system representing of the Gorontalo Province interconnection as a case study. The simulation results showed that the higher intensity of solar radiation resulted in the higher the stability of transient influence in the electrical transmission system.
机译:这项研究的目的是测量输电线路中大规模并网光伏发电的暂态稳定性。这项研究使用瞬态稳定性分析来测量功率角稳定性,频率稳定性,电压稳定性,有功功率响应,同步发电机的无功功率响应和临界清除时间的稳定性。分析了三相短路中断发生期间和光伏系统功率注入的变化。该仿真是在四种条件下进行的,即没有光伏的系统和太阳辐射强度为1000 W / m 2 ,700 W / m 2 和500 W / m 2 。该研究使用了代表Gorontalo Province互连的大型测试系统作为案例研究。仿真结果表明,太阳辐射强度越高,输电系统中瞬变影响的稳定性越高。

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