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首页> 外文期刊>Engineering Technology and Applied Science Research >Small Signal Modeling of Inverter-based Grid-Connected Microgrid to Determine the Zero-Pole Drift Control with Dynamic Power Sharing Controller
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Small Signal Modeling of Inverter-based Grid-Connected Microgrid to Determine the Zero-Pole Drift Control with Dynamic Power Sharing Controller

机译:基于逆变器的并网微电网的小信号建模,以确定带有动态功率共享控制器的零极点漂移控制

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摘要

This paper presents a small signal state space modeling of three-phase inverter-based microgrid (MG) system with consideration of improved droop control. The complete system matrices for one distribution source-grid connects to the local load have been elaborated by applying high, medium and low-frequency clusters to the system without considering the switching action on the inverter during power-sharing. Moreover, the final matrices will be used to determine the location of the eigenvalues for the control parameters gains due to dynamic effect of the MG, by observing the root locus graph on cluster identification. Sensitivity analysis of all types of frequency cluster showed that power-sharing control parameters such as load current, source current, and inverter voltage are influencing system stability and must be considered when designing the proportional-integral (PI) control when different load scenarios have been applied from the zero-pole drifting. Those eigenvalues of the system model are indicating the frequency and damping oscillatory components when there is sudden changed at the inverter-grid connection. The matrices’ eigenvalues are being plotted using MATLAB/Simulink to identify system stability region and find the PI controller parameters.
机译:本文提出了一种基于三相逆变器的微电网(MG)系统的小信号状态空间模型,其中考虑了改进的下垂控制。通过将高,中,低频集群应用于系统,无需考虑功率共享期间逆变器的开关动作,就可以详细说明用于连接到本地负载的一个配电网的完整系统矩阵。此外,最终矩阵将用于通过观察聚类识别的根轨迹图来确定由于MG的动态效果而导致的控制参数增益的特征值的位置。对所有类型频率集群的灵敏度分析表明,功率共享控制参数(例如负载电流,电源电流和逆变器电压)会影响系统稳定性,因此在设计了不同负载情况时,在设计比例积分(PI)控制时必须考虑这些因素从零极点漂移开始应用。当逆变器-电网连接突然改变时,系统模型的那些特征值指示频率和阻尼振荡分量。使用MATLAB / Simulink绘制矩阵的特征值,以识别系统稳定性区域并找到PI控制器参数。

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