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Impact of hydrogen aqua electrolyzer-fuel cell units on automatic generation control of power systems with a new optimal fuzzy TIDF-Ⅱ controller

机译:新型优化模糊TIDF-Ⅱ控制器对氢水电解-燃料电池单元对电力系统自动发电控制的影响

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To circumvent equipment damage, load shedding and possible blackouts in electric power system, brisk acting energy storage units can excellently shrink the frequency and tie-line power oscillations generated due to small load perturbations. This paper investigates the impact of the energy storage hydrogen aqua electrolyzer (HAE)-fuel cell (FC) units on automatic generation control (AGC) of interconnected power systems. AGC plays the pivotal role in providing the electricity supply with good quality standards in the fast growing word of todays. For this, AGC entails highly proficient and intelligent control technique. Hence, a new fuzzy tilt integral derivative with filter plus double integral (FTIDF-II) controller is proposed for the first time in AGC field as an intelligent control technique to upgrade AGC performance of power systems with/without HAE-FC units. A recently appeared socio-politically influenced global search metaheuristic imperialist competitive algorithm (ICA) is used to tune the parameters of FTIDF-II controller. In FTIDF-II controller, asymmetrically membership functions (MFs) are employed, where MFs alongside zero provide fine-tuning and away from zero coarse-tuning. The efficacy of the control approach is critically analyzed on three 2-area power system models selected from the literature. The supremacy of FTIDF-II controller is established over FTIDF and existing PID/PIDF/TIDF/FPI/FPID/FPIDF/FPIDF-II structured controller optimized via various newly emerged optimization techniques. Investigation affirms that the dynamic performance of the systems with FTIDF-II controller improves further in the presence of HAE-FC units. Sensitivity analysis demonstrated that the proposed controller is robust and executes competently at variations in the system parameters and random load perturbations. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了避免设备损坏,甩负荷和电力系统中可能出现的停电,轻快起作用的储能单元可以出色地减小由于较小的负荷扰动而产生的频率和联络线功率振荡。本文研究了储能氢水电解槽(HAE)-燃料电池(FC)单元对互连电力系统的自动发电控制(AGC)的影响。在当今快速发展的时代,AGC在为电力供应提供高质量标准方面扮演着举足轻重的角色。为此,AGC需要高度熟练和智能的控制技术。因此,在AGC领域首次提出了一种新的带滤波器加双积分的模糊倾斜积分微分(FTIDF-II)控制器,作为一种智能控制技术,可以升级带有/不带有HAE-FC单元的电力系统的AGC性能。最近出现的受社会政治影响的全局搜索元启发式帝国主义竞争算法(ICA)用于调整FTIDF-II控制器的参数。在FTIDF-II控制器中,采用了非对称隶属度函数(MF),其中MF与零一起提供微调,而远离零粗调。在从文献中选择的三个2区电力系统模型上严格分析了控制方法的有效性。 FTIDF-II控制器的霸主地位是建立在FTIDF之上,并通过各种新出现的优化技术对现有的PID / PIDF / TIDF / FPI / FPID / FPIDF / FPIDF-II结构化控制器进行了优化。调查证实,在存在HAE-FC单元的情况下,带有FTIDF-II控制器的系统的动态性能进一步提高。灵敏度分析表明,所提出的控制器具有鲁棒性,并且可以在系统参数变化和随机负载扰动下胜任地执行。 (C)2019 Elsevier Ltd.保留所有权利。

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