首页> 外文期刊>Applied solar energy >ANFIS Based Voltage Determination for Photovoltaic Systems According to the Specific Cell Parameters, and a Simulation for the Non-Isolated High Gain DC-DC Boost Converter Control Regard to Voltage Fluctuations
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ANFIS Based Voltage Determination for Photovoltaic Systems According to the Specific Cell Parameters, and a Simulation for the Non-Isolated High Gain DC-DC Boost Converter Control Regard to Voltage Fluctuations

机译:根据特定小区参数的光伏系统的基于ANFIS的电压确定,以及用于非隔离高增益DC-DC升压转换器控制的模拟到电压波动

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摘要

In this study, a solar panel is modeled and parametric simulation studies are performed with Ansys-Electronics 2019 R2 software according to atmospheric and temperature coefficient parameters that affect the efficiency of electrical energy produced in photovoltaic (PV) systems. Based on parametric simulation studies, 482 data of the voltage value of the electrical energy produced were obtained. Then a certain part of this data was used for training in Adaptive Network Fuzzy Inference System (ANFIS) algorithms and the system was tested with the estimated values produced. Thus, in the generation of solar and electrical energy, the duty ratio controller performance designed with an uninsulated DC–DC converter circuit proposed to generate a 400 V constant value DC bus voltage at the output due to voltage changes at the input is reported.
机译:在该研究中,根据大气和温度系数参数,使用ANSYS-Electronics 2019 R2软件进行建模和参数仿真研究,其影响光伏(PV)系统中产生的电能效率。基于参数仿真研究,获得了所产生的电能的电压值的482数据。然后,该数据的某部分用于培训在自适应网络模糊推理系统(ANFIS)算法中,并使用产生的估计值进行测试。因此,在太阳能和电能的产生中,占空比控制器性能设计利用未绝缘的DC-DC转换器电路,提出在由于输入的电压改变而在输出处产生400V恒值DC总线电压。

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