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Active Power Quality Improvement Strategy for Grid-connected Microgrid Based on Hierarchical Control

机译:基于分层控制的并网微电网有源电能质量改进策略

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摘要

When connected to a distorted grid utility, droop-controlled grid-connected microgrids (DCGC-MG) exhibit low equivalent impedance. The harmonic and unbalanced voltage at the point of common coupling (PCC) deteriorates the power quality of the grid-connected current (GCC) of DCGC-MG. This work proposes an active, unbalanced, and harmonic GCC suppression strategy based on hierarchical theory. The voltage error between the bus of the DCGC-MG and the grid’s PCC was transformed to the dq frame. On the basis of the grid, an additional compensator, which consists of multiple resonant voltage regulators, was then added to the original secondary control to generate the negative fundamental and unbalanced harmonic voltage reference. Proportional integral and multiple resonant controllers were adopted as voltage controller at the original primary level to improve the voltage tracking performance of the inverter. Consequently, the voltage difference between the PCC and the system bus decreased. In addition, we established a system model for parameter margin and stability analyses. Finally, the simulation and experiment results from a scaled-down laboratory prototype were presented to verify the validity of the proposed control strategy.
机译:当连接到变形的电网时,下垂控制的并网微电网(DCGC-MG)的等效阻抗低。公共耦合点(PCC)处的谐波和不平衡电压会降低DCGC-MG的并网电流(GCC)的电能质量。这项工作提出了一种基于分层理论的主动,不平衡和谐波GCC抑制策略。 DCGC-MG的总线与电网的PCC之间的电压误差被转换为dq帧。然后,在电网的基础上,将由多个谐振电压调节器组成的附加补偿器添加到原始次级控制中,以生成负基波和不平衡谐波电压基准。采用比例积分和多重谐振控制器作为原始初级电压控制器,以提高逆变器的电压跟踪性能。因此,PCC和系统总线之间的电压差减小了。此外,我们建立了参数裕度和稳定性分析的系统模型。最后,从缩小的实验室原型中给出了仿真和实验结果,以验证所提出的控制策略的有效性。

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