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Frequency regulation of an Islanded AC micro grid with DFA designed fuzzy controller under various uncertainties

机译:在各种不确定性下使用DFA设计的模糊控制器对孤岛式交流微电网进行频率调节

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The present article highlights over frequency stabilization of an autonomous AC micro grid beneath various uncertainties. The micro grid comprises various distribution generations (DG) for generating power to meet respective demands. However the low inertia and huge dynamic nature of most DG systems puts adverse effect over system frequency. The inherent dynamic nature of load and various uncertainties i.e, wind fluctuations, solar intensity variation creates frequency instabilities in the autonomous grid. In order to improve system dynamic behavior especially system frequency under such disturbances, the article has suggested a fuzzy rule based PID controller (fuzzy PID) for necessary control actions in the micro grid system. A nature inspired dragon fly algorithm (DFA) is proposed to optimal design the suggested fuzzy PID controller. Finally, the performances of proposed DFA optimized fuzzy PID controller is compared with PI and PID control strategy to justify its superiority under various operating regions.
机译:本文重点介绍了在各种不确定性下自主交流微电网的频率稳定性。微电网包括用于产生电力以满足各自需求的各种配电代(DG)。但是,大多数DG系统的低惯性和巨大的动态特性会对系统频率产生不利影响。负载的固有动态特性和各种不确定性(例如,风的波动,太阳强度的变化)会在自治电网中产生频率不稳定性。为了改善这种扰动下的系统动态性能,特别是系统频率,本文提出了一种基于模糊规则的PID控制器(模糊PID),用于微电网系统中的必要控制动作。提出了一种自然启发式蜻蜓算法(DFA),以对建议的模糊PID控制器进行优化设计。最后,将提出的DFA优化模糊PID控制器的性能与PI和PID控制策略进行比较,以证明其在各种运行区域下的优越性。

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