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Load Frequency Control of an Autonomous Microgrid Using Robust Fuzzy PI Controller

机译:使用鲁棒模糊PI控制器负载自主微电网的频率控制

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This paper proposes a robust load frequency control (LFC) strategy using a fuzzy logic-based PI controller for an autonomous hybrid microgrid with high renewable penetration. Such a high amount of renewable energy sources (RES) penetration replaces the contribution of diesel engine generators (DEGs), which intern reduces the system inertia as a result, microgrid (MG) experiences a frequency instability problem. Furthermore, the intermittent nature of the RES, load shedding and load restoring causes large frequency deviations which may weaken the MG and could lead to complete blackout. To solve the aforementioned problem, this work proposes an optimal coordinated control strategy between DEGs and SMES system for MG frequency control. Where this coordinated control strategy is based on the PI controller, which is optimally tuned by using a fuzzy logic approach. This proposed control strategy is tested on the BELLA-COOLA MG (in Canada), which was modelled in MATLAB/ Simulink. Finally, the simulation outcomes confirm the robustness and effectiveness of the proposed approach against all possible critical operational scenarios over various controllers in literature.
机译:本文提出了一种强大的负载频率控制(LFC)策略,采用基于模糊的基于逻辑的PI控制器,用于高可再生渗透的自主混合微电网。这种高量的可再生能源(RES)渗透取代了柴油发动机发生器(DEG)的贡献,实习生减少了系统惯性,MicroGrid(MG)经历了频率不稳定问题。此外,res的间歇性质,负载脱落和负载恢复导致大的频率偏差,这可能削弱MG,并且可能导致完全停电。为了解决上述问题,这项工作提出了用于MG频率控制的DEG和SMES系统之间的最佳协调控制策略。在这种协调控制策略基于PI控制器的情况下,通过使用模糊逻辑方法最佳地调整。该拟议的控制策略在Bella-Coola Mg(加拿大)进行了测试,该策略在Matlab / Simulink中建模。最后,模拟结果证实了拟议方法对文献中各种控制器的所有可能的关键业务情景的鲁棒性和有效性。

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