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Reactive Power Compensation Control of PV Systems for Improved Power Transfer Capability in Weak Grid

机译:光伏系统的无功功率补偿控制,以改善弱电网中的功率传输能力

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This paper proposes a reactive power compensation control strategy to improve the power output capability of photovoltaic (PV) inverters in weak grid. The mathematical model of the PV power station under different resistance-inductance ratios of the power grid transmission line is established, and the phasor diagram is simplified. The ability of the grid to output rated power under different short circuit ratio (SCR) is discussed, and the relationship between the power factor (PF) and the minimum SCR required by the PV power plant to output rated power is obtained. Furthermore, a reactive power compensation control strategy is proposed, which can effectively compensate the output voltage, thereby improving the power output capacity of the PV power plant under the weak grid. Meanwhile, the optimal PF for the operation of the PV power plant, i.e. the optimal compensation value of the output voltage, is obtained. Finally, the effectiveness of the proposed control strategy is verified through simulation.
机译:本文提出了一种无功补偿控制策略,以提高弱电网中光伏逆变器的输出功率。建立了电网输电线路电阻比不同时的光伏电站数学模型,并简化了相量图。讨论了电网在不同短路比(SCR)下输出额定功率的能力,并获得了功率因数(PF)与光伏电站输出额定功率所需的最小SCR之间的关系。此外,提出了一种无功补偿控制策略,可以有效补偿输出电压,从而提高弱电网下光伏电站的输出功率。同时,获得了用于光伏电站运行的最佳PF,即输出电压的最佳补偿值。最后,通过仿真验证了所提出控制策略的有效性。

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