Modeling and adaptive control strategy of hybrid microgrid based on virtual synchronous generator

Jianfeng Wang, Nurulazlina Ramli, Noor Hafizah Abdul Aziz
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Abstract

Aiming at large system operation fluctuations caused by the technical control of virtual synchronous generators, this article studies the introduction of interface converter control power, builds a virtual synchronous generator (VSG)-based hybrid microgrid model and adaptive control strategy. Finally it optimizes it with fuzzy logic to obtain an fuzzy logic controller (FLC) based adaptive VSG control strategy. The experimental results show that under the FLC-based adaptive VSG control strategy, in the reverse current mode, the system regression time is 0.37 s, and the DC bus voltage is 6.5 V; In the rectification mode, the system regression time is 0.49 s, and the DC bus voltage is 2.1 V. The results obtained are faster than the traditional VSG control strategy, and the DC bus voltage is 42.48%–68.66% lower. In summary, the suggested control approach is effective and reliable under the two operation modes, which can make the system operate safely and stably.

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基于虚拟同步发电机的混合微电网建模与自适应控制策略
针对虚拟同步发电机技术控制引起的系统运行大幅波动,本文研究了接口转换器控制功率的引入,建立了基于虚拟同步发电机(VSG)的混合微电网模型和自适应控制策略。最后通过模糊逻辑对其进行优化,得到了基于模糊逻辑控制器(FLC)的自适应 VSG 控制策略。实验结果表明,在基于 FLC 的自适应 VSG 控制策略下,在反向电流模式下,系统回归时间为 0.37 s,直流母线电压为 6.5 V;在整流模式下,系统回归时间为 0.49 s,直流母线电压为 2.1 V。结果比传统的 VSG 控制策略更快,直流母线电压降低了 42.48%-68.66% 。综上所述,建议的控制方法在两种运行模式下均有效可靠,可使系统安全稳定运行。
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