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Modeling and stability analysis of autonomous microgrid composed of inverters based on improved droop control

机译:基于改进的下垂控制的逆变器自主微电网建模与稳定性分析

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摘要

This study is aimed at a microgrid been composed of inverters. During autonomous operation of microgrid, every DG participates in the regulation of the voltage amplitude and frequency, while the change of the load power occurs. In this paper the virtual power droop control is adopted and virtual impedance was added to inverters. The small signal model of the microgrid system in autonomous operation was established. Because autonomous microgrid system is a complex nonlinear system, this paper adopts Lyapunov's first method on the system stability analysis, and then based it to estimate influence of control and line parameters of the interface inverter on the stability of the system. Finally, simulations are carried out using MATLAB to demonstrate the selected control and line parameters. Experiments are carried out on the experimental platform controlled by TMS320F2812 DSP. The results show that the power can be realized well and the system operation is stable in the unequal output line impedance.
机译:这项研究的目标是由逆变器组成的微电网。在微电网自主运行期间,每个DG都会参与电压幅度和频率的调节,而负载功率会发生变化。本文采用虚拟功率下降控制,并将虚拟阻抗添加到逆变器中。建立了微电网系统自主运行的小信号模型。由于自主微电网系统是一个复杂的非线性系统,因此本文采用Lyapunov的第一种方法进行系统稳定性分析,然后以此为基础来估计接口逆变器的控制和线路参数对系统稳定性的影响。最后,使用MATLAB进行仿真以演示所选的控制和线路参数。在TMS320F2812 DSP控制的实验平台上进行实验。结果表明,在不相等的输出线阻抗下,功率可以很好地实现,系统运行稳定。

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