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Modeling and control of Z-source grid-connected PV system with APF function

机译:具有APF功能的Z源并网光伏系统的建模与控制

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This paper describes a grid-connected photovoltaic (PV) system with the function of active power filter (APF), in which a Z-source network is employed to boost the DC bus voltage during periods when the PV array output is low. After modeling the Z-source network and H-bridge converter, a state space model of Z-source inverter is derived. The model reflects the fact that the Z-source inverter has two independent control variables: shoot-through duty d0 and modulation index m. The output variables can be controlled directly through these two variables. Using this model, a control strategy is developed with two control loops (Z-source voltage control loop and reference current control loop) to realize the proposed functionality. The reference current containing PV maximum power and harmonic components is developed based on instantaneous p-q theory via a proportional-integral (PI) controller. The resulting system delivers grid-connected generation from a PV system alongside the provision of harmonics suppression and reactive power compensation.
机译:本文介绍了一种具有有源功率滤波器(APF)功能的并网光伏(PV)系统,其中在光伏阵列输出较低期间,采用Z源网络来提高DC总线电压。在对Z源网络和H桥转换器建模之后,得出Z源逆变器的状态空间模型。该模型反映了Z源逆变器具有两个独立的控制变量:直通占空比d 0 和调制指数m的事实。可以通过这两个变量直接控制输出变量。使用该模型,开发了具有两个控制回路(Z源电压控制回路和参考电流控制回路)的控制策略,以实现所提出的功能。包含PV最大功率和谐波分量的参考电流是基于瞬时p-q理论通过比例积分(PI)控制器开发的。最终的系统可通过光伏系统提供并网发电,并提供谐波抑制和无功补偿功能。

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