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Distributed control scheme for accurate reactive power sharing with enhanced voltage quality for islanded microgrids

机译:具有增强电压质量的准确无功功率共享的分布式控制方案

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摘要

This study presents a distributed control scheme for islanded microgrids to eliminate power sharing errors as well as frequency and voltage deviations based on distributed cooperative control. A consensus algorithm is developed through adaptive regulation of the virtual impedances for accurate power sharing regardless of load variations. The proposed power sharing controller is quite easy to implement with only one simple integral gain. It is achieved without using information about the feeder impedances, load powers or detailed microgrid structure. To remove the deviations in the frequency and voltage magnitude, conventional droop equations are enhanced by adding compensating signals, which are simply determined from the neighbors' droop information without a PI controller. Therefore, the control complexity is significantly reduced. The control performance is theoretically analyzed using a small-signal state-space model to evaluate the system dynamics and stability. A digital simulation is done using PSIM, and experiments are carried out with a scaled-down microgrid prototype to verify the proposed scheme.
机译:本研究提出了一种用于孤岛微电网的分布式控制方案,以消除基于分布式协作控制的电力共享误差以及频率和电压偏差。无论负载变化如何,通过自适应调节虚拟阻抗的自适应调节,开发了一种共识算法。所提出的电源共享控制器非常容易实现,只能使用一个简单的积分增益实现。在不使用有关进料器阻抗的信息,负载功率或详细的微电网结构的情况下实现。为了消除频率和电压幅度中的偏差,通过添加补偿信号来增强传统的下垂方程,其简单地从没有PI控制器的邻居的下垂信息确定。因此,控制复杂性显着降低。使用小信号状态空间模型理论上分析控制性能,以评估系统动态和稳定性。使用PSIM进行数字仿真,并使用缩小的Microgrid原型进行实验以验证所提出的方案。

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