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

机译:电网系逆转器的无功功率控制,增强电网的稳定性

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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Grid Tie可再生能源逆变器的无功功率补偿方案,用于未来电网,具有实质可再生能源发电。传统的电网可再生能量逆变器成为动态无功补偿器。补偿器的目标是1)以调节逆变器和2)的输出电压,提高电网频率稳定性。我们提出了一种协调控制方案,用于逆变器,根据电网条件自动选择电压控制或频率控制操作模式。使用Matlab / Simulink仿真在微电网系统中测试控制方案。将性能与逆变器进行比较,而无功功率控制和具有电动功率控制的反应器,用于输出电压调节。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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