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A new load frequency control strategy for micro-grids with considering electrical vehicles

机译:考虑电动汽车的微电网负荷频率控制新策略

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Owing to the intermittent nature of the renewable energies employed in smart grids, large frequency fluctuations occur when the load frequency control (LFC) capacity is not enough to compensate for the imbalance of generation and demand. This problem may become intensified when the system is working in an island operation mode. Meanwhile, electric vehicles (EVs) are growing in popularity, being used as dispersed energy storage units instead of small batteries in the systems. Accordingly, the vehicle-to-grid (V2G) power control can be applied to compensate for the inadequate LFC capacity and thereby to improve the frequency stability of smart grids, especially in the island operation mode. On the other hand, large scale and complex power systems encounter many different uncertainties. In order to handle these uncertainties, this study proposes a combination of the general type-2 fuzzy logic sets (GT2FLS) and the Modified Harmony Search Algorithm (MHSA) technique, as a novel heuristic algorithm, to adaptively tune the proportional-integral (PI) controller for LFC in islanded MicroGrids (MGs). Although implementing general type-2 fuzzy systems is generally computationally cumbersome, by using a recently introduced plane representation, GT2FLS can be regarded as a combination of several interval type-2 fuzzy logic systems (IT2FLS), each with its own corresponding alpha level and linguistic rules can directly be incorporated into the controller. This paper further presents a new modified optimization algorithm to tune the scaling factors and the membership functions of general type-2 fuzzy PI (GT2FPI) controller and thereby to minimize the frequency deviations of the MG system against load disturbances more effectively. To evaluate the efficiency of the proposed controller, the obtained results are compared with those of the proportional integral derivative (PID), Fuzzy-PID (FPID), and Interval Type II fuzzy based PI (IT2FPI) controllers, which are the most recent methods applied in this respect. Simulation results demonstrate the perfection and efficacy of proposed controller. (C) 2016 Published by Elsevier B.V.
机译:由于智能电网中使用的可再生能源具有间歇性,当负载频率控制(LFC)容量不足以补偿发电和需求的不平衡时,会出现较大的频率波动。当系统在孤岛运行模式下工作时,此问题可能会加剧。同时,电动汽车(EV)越来越普及,被用作分散的能量存储单元,而不是系统中的小型电池。因此,可以应用车辆到电网(V2G)功率控制来补偿不足的LFC容量,从而改善智能电网的频率稳定性,尤其是在孤岛运行模式下。另一方面,大型复杂的电力系统面临许多不同的不确定性。为了解决这些不确定性,本研究提出了一种通用的2型模糊逻辑集(GT2FLS)和改进的和谐搜索算法(MHSA)技术的组合,作为一种新颖的启发式算法,以自适应地调整比例积分(PI )用于孤岛微网格(MG)中的LFC控制器。尽管实现一般的类型2模糊系统通常在计算上很麻烦,但是通过使用最近引入的平面表示,GT2FLS可以看作是几个区间2型模糊逻辑系统(IT2FLS)的组合,每个系统都有其自己对应的alpha级别和语言规则可以直接合并到控制器中。本文还提出了一种新的改进的优化算法,用于调整通用2型模糊PI(GT2FPI)控制器的比例因子和隶属函数,从而更有效地最小化针对负载扰动的MG系统的频率偏差。为了评估所提出的控制器的效率,将获得的结果与比例积分微分(PID),Fuzzy-PID(FPID)和区间II型基于模糊的PI(IT2FPI)控制器的结果进行比较,它们是最新方法。在这方面应用。仿真结果证明了所提出控制器的完美性和有效性。 (C)2016由Elsevier B.V.发布

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