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A Control Structure for a Photovoltaic Supply System with Power Compensation Characteristics Suitable for Smart Grid Topologies

机译:具有适用于智能电网拓扑的功率补偿特性的光伏供应系统的控制结构

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A system controller for a three-phase grid-connected inverter for photovoltaic applications is presented. The active and reactive currents will both be controlled in order to realize active power supply and reactive power compensation. The three-phase inverter will be controlled by a fast and robust sliding mode controller. The active and reactive current references will be calculated in order to maximize the electrical energy produced by PV arrays and at the same time as a reactive power compensator. For the calculation of these references the maximum apparent power of the three-phase inverter is also considered. When the PV system is not working at full power the three-phase inverter can also be working as reactive power compensator. The grid injected reactive power is limited by the maximum apparent power of the inverter. This allows integrating this system into a smart-grid. Numerical simulations obtained in the Simulink environment are presented in order to validate the proposed system.
机译:提出了一种用于光伏应用的三相网格连接逆变器的系统控制器。将控制有源和无功电流,以实现有源电源和无功补偿。三相逆变器将由快速且坚固的滑动模式控制器控制。将计算主动和反应电流参考文献,以最大化由PV阵列产生的电能,同时作为无功功率补偿器。为了计算这些参考,还考虑了三相逆变器的最大明显功率。当PV系统无法全电工作时,三相逆变器也可以作为无功功率补偿器。网格注入的无功功率受逆变器的最大明显功率的限制。这允许将该系统集成到智能电网中。呈现在Simulink环境中获得的数值模拟以验证所提出的系统。

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