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Design, simulation and implementation of Maximum Power Point Tracking (MPPT) for solar based renewable systems

机译:太阳能可再生系统的最大功率点跟踪(MPPT)的设计,仿真和实现

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This paper presents a holistic view of the concept of Maximum Power Point Tracking (MPPT) generally used and implemented for solar applications, so as to maximize the output for a conventional solar panel. This paper comprises of detailed study in the field of MPPT in a simulative environment using MATLAB and the same results are reproduced in hardware using Perturb and Observe (P&O) algorithm. Improvement in the performance of a conventional solar panel is seen through the simulation in terms of output voltage of the boost converter connected as the main DC-DC converter device. This is performed by changing the irradiance to the solar panel. The waveforms of current, voltage and thus the output power show its maximized value. The hardware results include the change in duty cycle with change in irradiance and thus signify the change in output voltage and current for a flyback converter controlled by the MPPT algorithm.
机译:本文全面介绍了太阳能应用中通常使用和实现的最大功率点跟踪(MPPT)概念,以使常规太阳能电池板的输出最大化。本文使用MATLAB在模拟环境中对MPPT领域进行了详细研究,并且使用Perturb and Observe(P&O)算法在硬件中重现了相同的结果。通过仿真,可以看到传统的太阳能电池板的性能有所提高,该仿真是作为主DC-DC转换器设备连接的升压转换器的输出电压。这是通过更改对太阳能电池板的辐照度来执行的。电流,电压和输出功率的波形显示出最大值。硬件结果包括占空比随辐照度的变化而变化,从而表示由MPPT算法控制的反激式转换器的输出电压和电流的变化。

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