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An Improved Fuzzy Logic Controller Design for PV Inverters Utilizing Differential Search Optimization

机译:差分搜索优化的光伏逆变器改进模糊逻辑控制器设计

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This paper presents an adaptive fuzzy logic controller (FLC) design technique for photovoltaic (PV) inverters using differential search algorithm (DSA). This technique avoids the exhaustive traditional trial and error procedure in obtaining membership functions (MFs) used in conventional FLCs. This technique is implemented during the inverter design phase by generating adaptive MFs based on the evaluation results of the objective function formulated by the DSA. In this work, the mean square error (MSE) of the inverter output voltage is used as an objective function. The DSA optimizes the MFs such that the inverter provides the lowest MSE for output voltage and improves the performance of the PV inverter output in terms of amplitude and frequency. The design procedure and accuracy of the optimum FLC are illustrated and investigated using simulations conducted for a 3 kW three-phase inverter in a MATLAB/Simulink environment. Results show that the proposed controller can successfully obtain the desired output when different linear and nonlinear loads are connected to the system. Furthermore, the inverter has reasonably low steady state error and fast response to reference variation.
机译:本文提出了一种采用差分搜索算法(DSA)的光伏(PV)逆变器自适应模糊逻辑控制器(FLC)设计技术。该技术避免了在获取常规FLC中使用的隶属函数(MF)时详尽的传统试错法。该技术是在逆变器设计阶段通过基于DSA制定的目标函数的评估结果生成自适应MF来实现的。在这项工作中,逆变器输出电压的均方误差(MSE)被用作目标函数。 DSA优化了MF,以使逆变器为输出电压提供最低的MSE,并在幅度和频率方面提高了PV逆变器输出的性能。通过在MATLAB / Simulink环境中对3 kW三相逆变器进行的仿真,说明并研究了最佳FLC的设计过程和精度。结果表明,当将不同的线性和非线性负载连接到系统时,所提出的控制器可以成功获得所需的输出。此外,逆变器具有相当低的稳态误差,并且对参考变化具有快速响应。

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