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Design and Analysis of Tilt Integral Derivative Controller for Frequency Control in an Islanded Microgrid: A Novel Hybrid Dragonfly and Pattern Search Algorithm Approach

机译:孤岛微电网中用于频率控制的倾斜积分微分控制器的设计与分析:一种新颖的混合蜻蜓和模式搜索算法

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摘要

In this research work, a maiden approach is made for the frequency control in an islanded AC microgrid (MG). A MG can be formed by combining the different sources like renewable energy source, wind power generation and the solar energy generation. Variation in any of the source influences the MG frequency, and thus, the frequency control issue for MG is always a challenge for the researcher industry. In light of these difficulties, this paper considers a tilt integral derivative (TID) controller for the secondary frequency control of the islanded MGs and a novel hybrid dragonfly algorithm and pattern search (hDF-PS) algorithm is used to tune the controller parameters. In the proposed control conspire, some sources like microturbine, diesel engine generator and fuel cell are used which balance the load and power can demand of the MG. The novel hybrid controller is inspected on a MG test system, and the robustness and execution are assessed by considering different disturbances and parametric variations. In order to show the effectiveness of the proposed hybrid algorithm-based TID controller, it is being compared with some conventional controllers like integral, proportional integral and proportional integral derivative-based controller. It can be demonstrated that the proposed hDF-PS-based TID controller approach (because of considering organized/parametric instabilities) gives preferably better execution over the other control techniques.
机译:在这项研究工作中,针对孤岛式交流微电网(MG)的频率控制采取了首创方法。可以通过组合不同的资源(例如可再生能源,风力发电和太阳能发电)来形成MG。任何来源的变化都会影响MG的频率,因此MG的频率控制问题始终是研究人员行业面临的挑战。鉴于这些困难,本文考虑将倾斜积分微分(TID)控制器用于孤岛MG的次级频率控制,并使用新颖的混合蜻蜓算法和模式搜索(hDF-PS)算法来调整控制器参数。在建议的控制方案中,使用了一些来源,例如微型涡轮机,柴油发动机发电机和燃料电池,它们平衡了MG的负载和功率需求。在MG测试系统上检查了新型混合控制器,并通过考虑不同的干扰和参数变化来评估其鲁棒性和执行力。为了显示所提出的基于混合算法的TID控制器的有效性,正在将其与一些常规控制器(例如积分,比例积分和比例积分微分控制器)进行比较。可以证明,所提出的基于hDF-PS的TID控制器方法(由于考虑了组织/参数不稳定性)最好比其他控制技术更好地执行。

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