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Enhanced Controller Topology for Photovoltaic Sourced Grid Connected Inverters under Unbalanced Nonlinear Loading

机译:非线性负载下光伏发电并网逆变器的增强控制器拓扑

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摘要

A growing dynamic electrical demand has created an increasing interest in utilizing nonconventional energy sources like Photovoltaic (PV), wind power, etc. In this context, this paper focuses on the design and development of a composite power controller (CPC) in the decoupled double synchronous reference frame (DDSRF) combining the advantages of direct power control (DPC) and voltage oriented control (VOC) for a PV sourced grid connected inverter. In addition, a controller with the inherent active filter configuration is tested with nonlinear and unbalanced loads at the point of common coupling in both grid connected and autonomous modes of operation. Furthermore, the loss and reactive power compensation due to a non-fundamental component is also incorporated in the design, and the developed DDSRF model subsequently allows independent active and reactive power control. The proposed developed model of the controller is also implemented using MATLAB-Simulink-ISE and a Xilinx system generator which evaluate both the simulated and experimental setups. The simulation and experimental results confirm the validity of the developed model. Further, simulation results for the DPC are also presented and compared with the proposed CPC to further bring out the salient features of the proposed work.
机译:不断增长的动态电力需求引起了人们对利用非常规能源(例如光伏(PV),风能等)的兴趣日益浓厚。在此背景下,本文着重介绍了在退耦双回路中复合功率控制器(CPC)的设计和开发。同步参考框架(DDSRF)结合了直接电源控制(DPC)和面向电压的控制(VOC)的优点,适用于光伏电源并网逆变器。此外,具有固有有源滤波器配置的控制器会在并网运行和自主运行模式下的公共耦合点上,通过非线性和不平衡负载进行测试。此外,设计中还包含了由于非基本成分引起的损耗和无功功率补偿,并且开发的DDSRF模型随后允许独立的有功和无功功率控制。拟议的控制器开发模型也可以使用MATLAB-Simulink-ISE和Xilinx系统生成器来实现,该生成器可以评估仿真设置和实验设置。仿真和实验结果证实了所开发模型的有效性。此外,还介绍了DPC的仿真结果,并将其与拟议的CPC进行了比较,以进一步体现拟议工作的显着特征。

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