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Reactive power flow control of grid tie inverter to enhance the stability of power grid

机译:并网逆变器的无功潮流控制,提高电网稳定性

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This paper studies the reactive power compensation schemes using grid tie renewable energy inverters for future power grid with substantial renewable energy power generation. A traditional grid tie renewable energy inverter becomes a dynamic reactive power compensator. The objectives of the compensator are 1) to regulate the output voltage of the inverter and 2) to enhance the grid frequency stability. We propose a coordinated control scheme for the inverter to automatically select either voltage control or frequency control operation modes depending on the power grid conditions. The control scheme is tested in a microgrid system using Matlab/Simulink simulation. The performance is compared with the inverter without reactive power control and inverter with reactive power control for output voltage regulation. Simulation results show that a proper coordinated control scheme can improve both the voltage and frequency stability of the power grid.
机译:本文研究了使用并网可再生能源逆变器的无功功率补偿方案,用于未来可再生能源发电量较大的电网。传统的并网可再生能源逆变器成为动态无功补偿器。补偿器的目的是1)调节逆变器的输出电压,以及2)增强电网频率稳定性。我们提出了一种针对逆变器的协调控制方案,以根据电网条件自动选择电压控制或频率控制操作模式。该控制方案在使用Matlab / Simulink仿真的微电网系统中进行了测试。将性能与不带无功功率控制的逆变器和带无功功率控制的逆变器进行输出电压调节的性能进行比较。仿真结果表明,适当的协调控制方案可以提高电网的电压和频率稳定性。

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