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A voltage unbalance compensation strategy based on virtual impedance for DGs in island microgrid without sequence component separation

机译:基于虚拟阻抗的电压不平衡补偿策略在没有序列分离的情况下基于DGS的DGS虚拟阻抗

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摘要

The increasing application of unbalanced loads may cause power quality issues in microgrid. In this paper, a voltage unbalance compensation strategy for distributed generators (DGs) in island microgrid is proposed to compensate the unbalanced bus voltage and improve the distribution effect of load current. The control system of the DGs mainly consists of active and reactive power droop controllers, a virtual impedance loop, voltage controllers. As the proposed voltage controller has two well decoupled control branches to independently control fundamental positive and negative sequence voltages, sequence component detection is not necessary for the implementation of virtual impedance. Then the positive sequence virtual impedance can be introduced to improve the power distribution effect of the DGs, and the negative sequence virtual impedance is introduced to compensate the voltage drop of the negative sequence current on the line impedance and to reduce the negative sequence circulating current. The design approach of the control system is discussed in detail. Finally, the validity and effectiveness of the proposed method are verified by simulation and experimental results.
机译:不平衡负载的越来越多的应用可能导致微电网中的电力质量问题。本文提出了一种用于岛显微电压器中分布式发电机(DGS)的电压不平衡补偿策略,以补偿不平衡的总线电压,提高负载电流的分布效果。 DG的控制系统主要由主动和无功垂直控制器,虚拟阻抗回路,电压控制器组成。由于所提出的电压控制器具有两个良好的解耦控制分支,以独立控制基本的正和负序列电压,因此序列分量检测不需要实现虚拟阻抗。然后可以引入正序列虚拟阻抗以改善DGS的功率分布效果,并引入负序列虚拟阻抗以补偿线路阻抗上的负序电流的电压降并降低负序列循环电流。详细讨论了控制系统的设计方法。最后,通过模拟和实验结果验证了所提出的方法的有效性和有效性。

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