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Photovoltaic solar system connected to the electric power grid operating as active power generator and reactive power compensator

机译:连接到电网的光伏太阳能系统,用作有功发电机和无功补偿器

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摘要

In the case of photovoltaic (PV) systems acting as distributed generation (DG) systems, the DC energy that is produced is fed to the grid through the power-conditioning unit (inverter). The majority of contemporary inverters used in DG systems are current source inverters (CSI) operating at unity power factor. If, however, we assume that voltage source inverters (VSI) can replace CSIs, we can generate reactive power proportionally to the remaining unused capacity at any given time. According to the theory of instantaneous power, the inverter reactive power can be regulated by changing the amplitude of its output voltage. In addition, the inverter active power can be adjusted by modifying the phase angle of its output voltage. Based on such theory, both the active power supply and the reactive power compensation (RPC) can be carried out simultaneously. When the insolation is weak or the PV modules are inoperative at night, the RPC feature of a PV system can still be used to improve the inverter utilisation factor. Some MATLAB simulation results are included here to show the feasibility of the method.
机译:在用作分布式发电(DG)系统的光伏(PV)系统的情况下,产生的DC能量通过功率调节单元(逆变器)馈送到电网。 DG系统中使用的大多数现代逆变器都是以单位功率因数运行的电流源逆变器(CSI)。但是,如果我们假设电压源逆变器(VSI)可以代替CSI,则我们可以在任何给定时间按无用功率的比例生成无功功率。根据瞬时功率理论,可以通过改变逆变器的输出电压幅度来调节逆变器的无功功率。另外,可以通过修改其输出电压的相角来调节逆变器的有功功率。基于这种理论,可以同时执行有功电源和无功补偿(RPC)。当日照弱或光伏组件在夜间不工作时,仍可以使用光伏系统的RPC功能来提高逆变器利用率。这里包括一些MATLAB仿真结果,以证明该方法的可行性。

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