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Real and reactive power control of a three-phase single-stage PV system and PV voltage stability

机译:三相单级光伏系统的有功和无功控制以及光伏电压的稳定性

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Grid-connected photovoltaic (PV) systems with power electronic interfaces can provide both real and reactive power to meet power system needs with appropriate control algorithms. This paper presents the control algorithm design for a three-phase single-stage grid-connected PV inverter to achieve either maximum power point tracking (MPPT) or a certain amount of real power injection, as well as the voltage/var control. The switching between MPPT control mode and a certain amount of real power control mode is automatic and seamless. Without the DC-to-DC booster stage, PV DC voltage stability is an important issue in the control design especially when the PV inverter is operating at maximum power point (MPP) with voltage/var control. The PV DC voltage collapse phenomenon and its reason are discussed. The method based on dynamic correction of the PV inverter output is proposed to ensure PV DC voltage stability. Simulation results of the single-stage PV system during system disturbances and fast solar irradiation changes confirm that the proposed control algorithm for single-stage PV inverters can provide appropriate real and reactive power services and ensure PV DC voltage stability during dynamic system operation and atmospheric conditions.
机译:具有电力电子接口的电网连接的光伏(PV)系统可以提供实际和无功的功率,以满足电力系统需求,具有适当的控制算法。本文介绍了三相单级电网连接的PV逆变器的控制算法设计,实现了最大功率点跟踪(MPPT)或一定量的实际功率注入,以及电压/ var控制。 MPPT控制模式和一定量的实际功率控制模式之间的切换是自动和无缝的。如果没有DC-DC增强台,PV DC电压稳定性是控制设计中的一个重要问题,特别是当PV逆变器以电压/ var控制的最大功率点(MPP)运行时。讨论了光伏直流电压塌陷现象及其原因。提出了基于PV逆变器输出的动态校正的方法,以确保PV DC电压稳定性。系统干扰过程中单级PV系统的仿真结果和快速太阳能照射变化确认,所提出的单级PV逆变器控制算法可以提供适当的实际和无功功率服务,并确保动态系统运行和大气条件下的PV DC电压稳定性。

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