MPP tracking using IS controller based SEPIC converter

G. Prutha, G. Anitha
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Abstract

This paper presents maximum power point tracking (MPPT) using an intelligence system (IS) based single-ended primary-inductor (SEPIC) converter to operate photovoltaic (PV) system. This paper represents the comparison and improvisation of efficiency with two controllers. The suggested IS is showed to get faster response when compared to the traditional PI controller. It showed high precision during current and irradiation variation and retains the voltage without any changes in the system. The proposed IS based system makes sure that the favorable use of PV system and demonstrates its intended results in different irradiation functions at the output part. The execution of the converter is been tested at different constraints. The execution of the proposed IS based MPP operation of converter will be comparing with the conventional PI based converter. The results in this work is shown that the IS based MPP scheme for SEPIC will be tracking the accurate reference signal and as well as the transfer power more than that of the conventional PI based system. Compare to the PI based system the FLC has improved its efficiency about 3% in this work. In this paper the Simulink model is been built in MATLAB 2013a Version is used to get the result.
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基于IS控制器的SEPIC转换器的MPP跟踪
提出了一种基于智能系统(IS)的单端初级电感器(SEPIC)变换器的最大功率点跟踪(MPPT)系统。本文对两种控制器的效率进行了比较和改进。与传统PI控制器相比,所提出的IS控制器具有更快的响应速度。该方法在电流和辐照变化时具有较高的精度,并能保持系统电压不变。所提出的基于IS的系统确保了光伏系统的良好利用,并在输出部分展示了不同辐照功能的预期效果。在不同的约束条件下对转换器的执行进行了测试。将所提出的基于IS的变换器MPP操作的执行情况与传统的基于PI的变换器进行比较。研究结果表明,与传统的PI系统相比,基于is的SEPIC MPP方案能够准确地跟踪参考信号,并且传输功率更大。与基于PI的系统相比,FLC的效率提高了约3%。本文在MATLAB 2013a版本中建立了Simulink模型,得到了结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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