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Simulation and Practical Implementation of ANFIS-Based MPPT Method for PV Applications Using Isolated Cuk Converter

机译:采用隔离CUK转换器的PV应用基于ANFIS的MPPT方法的仿真与实践

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摘要

Photovoltaic (PV) module behavior is not linear in nature with respect to environmental conditions and hence exhibits nonlinear PV curves. There is only a single point in the nonlinear PV curve at which the power is maximum. Therefore, special methods have been proposed to track this maximum power point (MPP). This paper proposed an intelligent method for MPP tracking (MPPT) based on adaptive neuro-fuzzy inference system (ANFIS) controller. The proposed system consists of a PV module connected to a DC-DC isolated Cuk converter and load. A MATLAB/SIMULINK-based MPPT model is built to test the behavior of the proposed method. The proposed method is tested under different weather scenarios. Simulation results exhibit the successful tracking of the proposed method under all ambient conditions. Comparison of the tracking behavior of the proposed method with the perturb and observe method is also presented in the simulation results. In addition, a 220 W prototype with the help of dSPACE 1104 data acquisition system is built and tested under practical weather conditions on a sunny day as well as on a cloudy day. Experimental results are presented to verify the effectiveness of the proposed method. These results exhibit satisfactory performance under different practical weather conditions.
机译:相对于环境条件,光伏(PV)模块行为在性质上不是线性的,因此表现出非线性PV曲线。在非线性PV曲线中只有一个点,电源最大。因此,已经提出了特殊方法来跟踪该最大功率点(MPP)。本文提出了一种基于自适应神经模糊推理系统(ANFIS)控制器的MPP跟踪(MPPT)的智能方法。所提出的系统包括连接到DC-DC隔离CUK转换器和负载的PV模块。构建了基于MATLAB / SIMULINK的MPPT模型以测试所提出的方法的行为。在不同的天气场景下测试了所提出的方法。仿真结果表明,在所有环境条件下,拟议方法的成功跟踪。在模拟结果中还介绍了具有扰动和观察方法的所提出方法的跟踪行为的比较。此外,借助DSPACE 1104数据采集系统的220 W原型在阳光明媚的日子以及阴天的实际天气条件下建造和测试。提出了实验结果以验证所提出的方法的有效性。这些结果在不同的实际天气条件下表现出令人满意的性能。

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