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Single-stage inverter-based grid-connected photovoltaic power plant with ride-through capability over different types of grid faults

机译:基于单级逆变器的网格连接的光伏电厂,通过不同类型的网格故障乘坐电力

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摘要

In this paper the control of a single-stage grid-connected photovoltaic power plant (GCPPP) is developed to address the issue of inverter disconnection under various grid faults. There are three main reasons for inverter disconnection which are (i) excessive dc-link voltage, (ii) excessive ac currents and (iii) loss of grid-voltage synchronization. The control of the inverter incorporates reactive power support in the case of voltage sags based on grid code requirements to ride-through the faults and support the grid voltages. Accordingly, another requirement of the grid codes is to control the reactive current injection under unbalanced voltage sags so that the voltages in the non-faulty phases do not exceed the specified limitations. All these issues are discussed in this paper for a case study of 1-MVA GCPPP using MATLAB/Simulink. The results illustrate the capability of the developed GCPPP to ride-through different types of faults occurred on the grid side.
机译:在本文中,开发了一种控制单级电网连接的光伏电厂(GCPPP),以解决各种网格故障下逆变器断开的问题。逆变器断开有三个主要原因是(i)过量的直流链路电压,(ii)过量的交流电流和(iii)电网电压同步的损失。逆变器的控制在基于电压凹陷的情况下包括用于通过故障的网格码要求并支持电网电压的电压凹陷的情况下的无功功率支持。因此,网格代码的另一个要求是在不平衡电压下隙下控制反应电流注入,使得非故障阶段中的电压不超过规定的限制。本文讨论了所有这些问题,用于使用MATLAB / Simulink的1-MVA GCPPP案例研究。结果说明了在网格侧发生了开发的GCPPP的能力,通过不同类型的故障发生。

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