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Application of neuro-fuzzy controller on voltage and frequency stability in islanded microgrids

机译:神经模糊控制器在孤岛微电网电压和频率稳定性中的应用

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摘要

This paper presents a new droop control strategy based on neuro-fuzzy technique to minimize voltage and frequency deviations in islanded microgrids (MGs) under severe changes in load. In islanded MGs, due to lack of the backup power, the imbalance between consumption and generation usually leads to violent voltage/frequency fluctuations. Therefore, designing a reliable control structure to prevent the MG instability is needed. The proposed control strategy is designed to maintain the system stability and minimize the voltage/frequency fluctuations regardless of the MG structure. The most important advantage of the proposed controller is independency from the MG structure and operating conditions. The simulation results show the appropriate operation and efficacy of the proposed controller in the presence of severe changes in load.
机译:本文提出了一种新的基于神经模糊技术的下垂控制策略,以在负载变化剧烈时最小化孤岛微电网(MGs)的电压和频率偏差。在孤岛型MG中,由于缺乏备用电源,因此功耗和发电之间的不平衡通常会导致剧烈的电压/频率波动。因此,需要设计一种可靠的控制结构来防止MG的不稳定。所提出的控制策略旨在保持系统的稳定性并最大程度地减小电压/频率波动,而与MG结构无关。所提出的控制器的最重要的优点是独立于MG的结构和操作条件。仿真结果表明,在负载发生严重变化的情况下,所建议控制器的适当操作和效率。

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