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Research on the strategy of cooperative control between photovoltaic grid-connected and reactive power compensation technology

机译:光伏电网连接与无功补偿技术的合作控制策略研究

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摘要

When connecting a large number of generating sets into power grid, there will be the harmonic wave generated in power grid causing voltage and current distortion, which affects power quality seriously. Based on the instantaneous reactive power theory, the active current, reactive current and harmonic current can be real-time monitored. The P–Q method can be adopted to control reactive power compensation. By building the converter control model, the variation of reactive power of power grid between photovoltaic grid-connected inverter working under stand-alone mode and grid-connected mode can be analysed via a simulation system. The experimental analysis of reactive power compensation and harmonic suppression, the availability of the control strategy of the photovoltaic grid-connected inverter system can be proved. Using this novel strategy, the photovoltaic grid-connected power system can not only provide active power but also compensate reactive power and suppress harmonic, which will improve power quality.
机译:当将大量生成集连接到电网时,将有电网产生的谐波导致电压和电流失真,这严重影响功率质量。基于瞬时无功功率理论,有源电流,无功电流和谐波电流可以是实时监测的。这 p-q 可以采用方法来控制无功补偿。通过构建转换器控制模型,可以通过模拟系统分析在独立模式下工作的光伏电网连接逆变器之间电网之间的电网的变化。无功功率补偿和谐波抑制的实验分析,可以证明光伏电网连接逆变系统的控制策略的可用性。使用这种新颖的策略,光伏电网连接的电力系统不仅可以提供有功功率,而且还可以补偿无功功率和抑制谐波,这将提高电力质量。

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