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Frequency Regulation and optimization of Microgrid System with Multi PV-VSG using Advanced Droop Controller

机译:使用高级下垂控制器的多PV-VSG微电网系统的频率调节与优化

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The future of the machine-controlled power system is advancing to an inverter-based power system with a huge integration of renewable energy sources (RES) like photovoltaic (PV) and wind energy. The penetration of RES leads to instability of frequency due to the lack of inertia. Recent development has been made in inverter’s based virtual inertia control for frequency regulation in virtual synchronous generator-based systems. Inverters connecting to the microgrid are provided with virtual inertia and droop control by the virtual synchronous generator (VSG) system. In this study, three parallel VSGs based PV systems are used to investigate the frequency response and voltage stability. An advanced genetic algorithm (GA) optimization method is utilized to attain the optimum parameters of the droop control used in the VSGs. Furthermore, two different case studies with respect to load change are analyzed in detail with comparisons with the classical droop controller. The simulation results observed many improvements of the proposed controller over the classical controller.
机译:机器控制功率系统的未来正在推进到基于逆变器的电力系统,具有巨大集成可再生能源(RES),如光伏(PV)和风能。由于缺乏惯性,RES的渗透导致频率的不稳定性。基于虚拟同步发电机的系统频率调节的逆变器的虚拟惯性控制,最近的开发。连接到MicroGrid的逆变器提供虚拟同步发电机(VSG)系统的虚拟惯性和下垂控制。在该研究中,基于三个并行VSGS的PV系统来研究频率响应和电压稳定性。高级遗传算法(GA)优化方法用于达到VSG中使用的下垂控制的最佳参数。此外,通过与经典下垂控制器的比较详细分析了相对于负载变化的两个不同的案例研究。仿真结果观察到古典控制器上所提出的控制器的许多改进。

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