混合可再生能源微电网虚拟阻抗控制策略研究

Qingguang Yu, Zhicheng Jiang, Mengchu Zhao
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引用次数: 1

摘要

详细分析了虚拟阻抗的原理,并对不同容量逆变器并联仿真进行了详细的对比分析。分析了虚拟阻抗的原理,并对其进行了详细的推导和分析。仿真结果表明,在无虚阻抗的情况下,不同容量并联逆变器的无功功率不能均匀分布,逆变器之间存在较大的无功循环,严重威胁微网的安全稳定运行。引入虚阻抗后,可有效改善无功功率分配,且随着虚阻抗的增大,分配效果较好,但会造成交流母线电压凹陷。本文将虚拟阻抗引入到传统的下垂控制中,使逆变器的输出阻抗和线路阻抗以电感阻抗为主,从而实现下垂控制算法。本文提出了一种基于虚拟阻抗调节微电网母线频率和电压的新方法,实现了微电网电压的调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research of Virtual Impedance Control Strategy of Hybrid Renewable Energy Microgrid
The principle of virtual impedance is analyzed in detail, and the simulation of parallel connection of inverter with different capacity is compared and analyzed in detail. The principle of virtual impedance is analyzed, and its derivation and analysis are carried out in detail. The simulation results show that the reactive power of parallel inverters with different capacities without virtual impedance cannot be distributed proportionally, and there is a large reactive circulation between inverters, which seriously threatens the safe and stable operation of micro grid. After the introduction of virtual impedance, reactive power distribution can be effectively improved, and the distribution effect is better with the increase of virtual impedance, but it will cause voltage sag of AC bus. This paper introduced the virtual impedance into the traditional droop control, make the output impedance and line impedance of the inverter are mainly inductive, so the droop control algorithm is implemented. This paper presented a new method based on the virtual impedance to adjust the frequency and voltage of the micro-grid bus to realize the adjustment of the voltage of the micro grid.
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