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Inverter-Based Local AC Bus Voltage Control Utilizing Two DOF Control

机译:利用两个自由度控制的基于逆变器的本地交流母线电压控制

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Small- and medium-sized distributed generation (DG) systems in a microgrid normally have inverters, and the inverter outputs are connected to the grid through an $LCL$ filter. In this paper, we are interested in designing a DG inverter that behaves like a uninterruptible power supply (UPS) for its dedicated loads, while enabling power flow control with the microgrid. If the grid power is lost, then the DG system can be transferred smoothly to the island (stand-alone) operation. This islanding capability provides a higher reliability of the local ac bus than the conventional power system. In order to have such a UPS functionality, the inverter is desired to have a high control bandwidth, which is required for regulating the AC bus voltage at the presence of nonlinearities and unpredictable behaviors of the loads. As for a fast controller, a two-degree-of-freedom (DOF) controller is applied to the $LC$ filter plant with the inverse dynamic model. The voltage command levels are selected considering the amount of power share with the grid. The effectiveness of the proposed control scheme is shown by experimental results.
机译:微电网中的中小型分布式发电(DG)系统通常具有逆变器,并且逆变器的输出通过$ LCL $滤波器连接到电网。在本文中,我们对设计一种DG逆变器感兴趣,该DG逆变器的性能类似于专用负载的不间断电源(UPS),同时可以通过微电网进行功率流控制。如果电网断电,则DG系统可以平稳地转移到孤岛(独立)运行。与常规电源系统相比,这种孤岛功能可提供更高的本地交流总线可靠性。为了具有这样的UPS功能,期望逆变器具有高控制带宽,这对于在存在非线性和负载的不可预测行为的情况下调节AC总线电压是必需的。对于快速控制器,将两自由度(DOF)控制器应用于具有逆动态模型的$ LC $滤波器工厂。选择电压命令级别时要考虑与电网共享的电量。实验结果表明了所提出控制方案的有效性。

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