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Improved-GWO designed FO based type-Ⅱ fuzzy controller for frequency awareness of an AC microgrid under plug in electric vehicle

机译:改进的 - GWO设计的基于Ⅱ型模糊控制器,用于电动汽车插头频率微电网的频率意识

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The paper proposes to use an improved Grey Wolf Optimization (GWO) optimized Fractional Order (FO) based type-II fuzzy controller for frequency regulation of an AC microgrid in presence of plug-in electric vehicles. The AC microgrid comprises various renewable-based energy sources such as wind turbine generator (WTG), photovoltaic cell (PV), microturbine (MT), aqua electrolyzer based fuel cell (FC) and diesel engine generator (DEG) along with various storage devices (ESD) like battery energy storage (BES), flywheel energy storage (FES) and electric vehicles (EV). The uncertain nature of solar, wind technologies and load demand makes the system more complicated and introduces the frequency oscillations in the system. It is highly needed to establish power balance among generation by designing an appropriate controller for frequency regulation. This paper proposes a robust fractional order type-II fuzzy PID (FO-T2-FPID) where the parameters of the FO-T2-FPID controllers are optimized by suggesting an improved GWO (I-GWO) algorithm. To demonstrate the capability of proposed I-GWO algorithm few comparative analyses have been performed over particle swarm optimization (PSO) and grey wolf optimization (GWO) algorithm. It is also observed that for the same FO-T2-FPID controller structure, the percentage improvement in the objective function (ITAE) under load uncertainty by I-GWO compared to GWO and PSO are 29.74% and 65.94% respectively. Finally, it is conferred that proposed I-GWO optimized FO-T2-FPID controller significantly improves microgrid dynamic performance under various operational conditions.
机译:本文提出使用改进的灰狼优化(GWO)优化的分数级(FO)Type-II模糊控制器,用于在存在插入电动车辆的情况下进行AC微电网的频率调节。 AC MicroGrid包括各种可再生的基于可再生能源的能源,例如风力涡轮发电机(WTG),光伏电池(PV),基于微电池(MT),基于水上电解槽的燃料电池(FC)和柴油发动机(DEG)以及各种存储装置(ESD)如电池储能(BES),飞轮储能(FES)和电动车(EV)。太阳能,风技术和负载需求的不确定性质使系统更复杂并引入系统中的频率振荡。通过设计适当的频率调节控制器,非常需要在一代中建立电力平衡。本文提出了一种坚固的分数级 - II型模糊PID(FO-T2-FPID),通过暗示改进的GWO(I-GWO)算法,优化了FO-T2-FPID控制器的参数。为了证明所提出的I-GWO算法的能力,已经通过粒子群优化(PSO)和灰狼优化(GWO)算法进行了少量比较分析。还观察到,对于相同的FO-T2-FPID控制器结构,与GWO和PSO相比,I-GWO负载不确定度的物镜不确定性(ITAE)的百分比分别为29.74%和65.94%。最后,赋予其提出的I-GWO优化FO-T2-FPID控制器在各种操作条件下显着提高了微电网动态性能。

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