基于模糊控制器最大功率点跟踪(MPPT)的扰动观测

Ahmed Ali, Ali N. Hasan, T. Marwala
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引用次数: 40

摘要

光伏(PV)系统被认为是利用太阳直接辐射并将其转化为电能的可再生能源。这种系统中最重要的元件是光伏电池,它们连接成一个阵列,产生可用的电能。这些系统在考虑到系统负载的条件和需要时,需要电子转换器将系统的输出电流和电压转换成适当的形式。最常用的电子转换器是DC到DC转换器,其中高电压是由低太阳能电池电压产生的。本文对光伏系统和DC - DC变换器进行了研究,分为两种情况:第一种情况下,系统被设计为闭环系统,因为系统的情况取决于最大功率点跟踪(MPPT)算法,该算法捕获最大的日照量以产生最大的电力。本系统采用MATLAB/SIMULINK软件进行了仿真和硬件实现,并与实际组件进行了集成。在第二种情况下,系统是基于MPPT设计的,但仿真是使用模糊逻辑控制器进行的。给出了两种情况下的实现和仿真结果,说明了当输入电压影响发生变化时输出电压的稳态恢复能力。在输出电压返回中存在一分钟的稳定时间和超调。最后,对两种情况的结果进行比较,以确定哪种情况更好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Perturb and observe based on fuzzy logic controller maximum power point tracking (MPPT)
Photovoltaic (PV) systems are considered to be renewable resources of energy that utilize direct sun radiation and converts it to electric power. The most important elements in such systems are photovoltaic cells that are connected as an array to produce usable electric energy. These systems need electronic converters to convert the system's output current and voltage into a proper form when considering the conditions of the system's load and its needs. The most commonly used electronic converter is the DC to DC converter where high voltage is generated from the low solar cell voltage. This paper, explores the PV system and DC to DC converter with reference to two cases: in the first case, the system was designed as a closed loop system, since the situation of the system depends on the algorithm of the maximum power point tracking (MPPT), which captures the maximum amount of sunshine to generate the maximum electrical power. This system simulation and hardware implementation was done using the MATLAB/SIMULINK software program and real components integration. In the second case, the system was designed depending on MPPT, but the simulation was done by using a fuzzy logic controller. The implementation and simulation results for both cases are presented to illustrate the output voltage's steady state returning ability when the input voltage influence varied. The presence of a minute settling time and over-shoot in output voltage return ia apparent as well. Finally, the result for the two cases is compared to ascertain which case is better.
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