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Steady state error elimination and harmonic compensation using proportional resonant current controller in grid-tied DC microgrids

机译:并网直流微电网中使用比例谐振电流控制器的稳态误差消除和谐波补偿

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Optimized operation of grid-tied DC microgrids requires the application of an efficient current control strategy. Proportional resonant (PR) control is found to be one of the suitable control schemes to regulate grid currents in grid connected Voltage Source Converters. The paper focuses on achieving minimal steady state error between the desired and actual values of the series injected grid currents in the system. An additional advantage of selective harmonic compensation enhances the employability of this new breed of controllers. Tracking converter reference currents in the stationary reference frame is investigated to cancel out the shortcomings encountered while using conventional method comprising proportional integral controllers. Simulation research is carried out on the specified control area and a detailed discussion of both analytical and simulation results are presented. Simulation results furnished validate the test system connected to a linear inductive load when synchronized with the AC main power grid.
机译:并网直流微电网的优化运行需要应用有效的电流控制策略。发现比例谐振(PR)控制是调节电网连接电压源转换器中电网电流的合适控制方案之一。本文着重于在系统中串联注入的电网电流的期望值与实际值之间实现最小的稳态误差。选择性谐波补偿的另一个优点是增强了这种新型控制器的可使用性。研究了在固定参考系中跟踪转换器参考电流,以消除使用包括比例积分控制器的常规方法时遇到的缺点。在指定的控制区域上进行了仿真研究,并给出了对分析结果和仿真结果的详细讨论。提供的仿真结果验证了与交流主电网同步时连接至线性电感负载的测试系统。

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