基于极值求法的虚拟同步发电机集成微电网分布式二次控制

Weihang Yan, David Wenzhong Gao, Shuo Huang
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引用次数: 6

摘要

研究了具有虚拟同步发电机集成的孤岛微电网,建立了dq参考下的虚拟同步发电机动态模型。利用极值求算法的简单结构,设计了微电网分布式二次控制器,并将其分配到每个分布式发电机上,使微电网在受到干扰时协同调整频率至其标称值。分析了整个双层系统的动力学行为。在频率变化模式上,对变极值求收敛增益和变虚拟同步发电机惯性常数进行了修改,以实现更快的频率恢复。最后给出了微网物理网络内频率、分布式发电机间有功分配和控制的仿真结果。理论分析和仿真结果表明,分布式二次控制器的参与使微电网在负荷扰动的情况下也能迅速恢复到标称频率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed Secondary Control of Virtual Synchronous Generator Integrated Microgrid via Extremum Seeking
In this paper, an islanded microgrid with virtual synchronous generator integration is investigated and virtual synchronous generator dynamic model under dq reference is presented. Moreover, the distributed secondary controllers of microgrid are designed and allocated to each distributed generator by taking advantage of the simple structure of Extremum Seeking algorithm for purpose of adjusting the frequency of microgrid to its nominal value cooperatively during disturbance. The dynamic behavior of overall proposed two-layer system is analyzed. Regarding on frequency changing pattern, modifications is made on variable Extremum Seeking convergence gain and variable virtual synchronous generator inertia constant in order to achieve faster frequency restoration. Finally, simulation results regarding the frequency within microgrid physical network, active power allocation and control among distributed generators are given. Both theoretical analysis and simulation results reveal that the participation of distributed secondary controller recovers the frequency of microgrid to its nominal value quickly even though load disturbance occurs.
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