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Nonlinear adaptive NeuroFuzzy feedback linearization based MPPT control schemes for photovoltaic system in microgrid

机译:基于非线性自适应神经舒缩反馈线性化MPPT控制方案在微电网中的光伏系统

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Renewable energy resources connected to a single utility grid system require highly nonlinear control algorithms to maintain efficient operation concerning power output and stability under varying operating conditions. This research work presents a comparative analysis of different adaptive Feedback Linearization (FBL) embedded Full Recurrent Adaptive NeuroFuzzy (FRANF) control schemes for maximum power point tracking (MPPT) of PV subsystem tied to a smart microgrid hybrid power system (SMG-HPS). The proposed schemes are differentiated based on structure and mathematical functions used in FRANF embedded in the FBL model. The comparative analysis is carried out based on efficiency and performance indexes obtained using the power error between the reference and the tracked power for three cases; a) step change in solar irradiation and temperature, b) partial shading condition (PSC), and c) daily field data. The proposed schemes offer enhanced convergence compared to existing techniques in terms of complexity and stability. The overall performance of all the proposed schemes is evaluated by a spider chart of multivariate comparable parameters. Adaptive PID is used for the comparison of results produced by proposed control schemes. The performance of Mexican hat wavelet-based FRANF embedded FBL is superior to the other proposed schemes as well as to aPID based MPPT scheme. However, all proposed schemes produce better results as compared to conventional MPPT control in all cases. Matlab/Simulink is used to carry out the simulations.
机译:连接到单个实用电网系统的可再生能源资源需要高度非线性控制算法,以在不同的操作条件下保持有关电力输出和稳定性的有效操作。该研究工作提出了对PV子系统的最大功率点跟踪(FBL)的不同自适应反馈线性化(FBL)嵌入式全反复间自适应神经舒缩(FLANF)控制方案的比较分析。所提出的方案基于FBL模型中嵌入FLANF中使用的结构和数学函数来区分。基于使用参考和跟踪电源之间的功率误差获得的效率和性能指标进行比较分析; a)太阳照射和温度,b)部分着色条件(PSC)和C)日常场数据。与现有技术在复杂性和稳定性方面相比,该方案提供了增强的收敛性。所有提议方案的整体性能由多变量可比参数的蜘蛛图评估。自适应PID用于比较所提出的控制方案产生的结果。墨西哥帽基小波的FRANF嵌入式FBL的性能优于其他提出的方案以及基于APID的MPPT方案。然而,与传统的MPPT控制相比,所有提出的方案都会产生更好的结果。 MATLAB / SIMULINK用于执行模拟。

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