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首页> 外文期刊>American journal of engineering and applied sciences >Design Maximum Power Point Tracking (MPPT) on Photovoltaic Panels using Fuzzy Logic Method | Science Publications
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Design Maximum Power Point Tracking (MPPT) on Photovoltaic Panels using Fuzzy Logic Method | Science Publications

机译:使用模糊逻辑方法设计光伏面板上的最大功率点跟踪(MPPT)|科学出版物

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> >Solar energy is a clean energy, renewable, and available for the long term. The tool used to convert the energy generated from the intensity of sunlight into electricity is photovoltaic panels. However, due to the high cost and low efficiency, the use of the energy is still kind small compared to other types of energy sources. Thus, the need for an effective and flexible models, which resemble the characteristics of the actual photovoltaic (PV), so that we can perform simple manipulation of some data to figure out how to get the maximum performance possible. The characteristic of the solar panel output is specific and non-linear, it depend on the solar irradiation and the temperature of the solar panel. Because of it, it makes us difficult to get the Maximum Power Point (or abbreviated MPP) of the solar panels. Approach: Therefore, to solve these problems required the modeling of the solar panel for design and simulate the algorithms of Maximum Power Point Tracking (MPPT) to maintain the working point of solar panels fixed on the MPP. Overall, the designed system results carried are running well. The increase in the average value of the output voltage by 17%, from an average of 11.6 V before installation into 13.94 V after installation MPPT system. It also occurs in output power with an increase of 28%, from an average of 35.13 W before installing system MPPT into 48.9 W after installation MPPT system. The temperature effect on module voltage and output power before and after installation of the MPPT system that after the installation of the MPPT system, the voltage output of photovoltaic modules can be maintained around the desired maximum value that’s equal to 12 V. But there was a drop in output power value compared to the prior installation MPPT system. This is caused by the output current value that cannot accommodate the value of the output voltage. So that the value of the output current is enough to produce the maximum output power is needed quantities corresponding load.
机译: > >太阳能是一种清洁能源,可再生,可长期使用。光伏板是用于将太阳光强度产生的能量转换为电能的工具。但是,由于成本高和效率低,与其他类型的能源相比,能源的使用仍然很少。因此,需要一个有效且灵活的模型,该模型必须类似于实际光伏(PV)的特征,以便我们可以对某些数据进行简单的处理,以弄清楚如何获得最大的性能。太阳能电池板输出的特性是特定且非线性的,它取决于太阳辐射和太阳能电池板的温度。因此,它使我们很难获得太阳能电池板的最大功率点(或缩写为MPP)。方法:因此,要解决这些问题,需要设计太阳能电池板以进行设计并模拟最大功率点跟踪(MPPT)算法,以将太阳能电池板的工作点保持在MPP上。总体而言,所设计的系统结果运行良好。输出电压的平均值从安装前的平均11.6 V增加到安装MPPT系统后的13.94 V,增加了17%。它的输出功率也增加了28%,从安装系统MPPT之前的平均35.13 W到安装MPPT系统之后的48.9W。在安装MPPT系统之前和之后,温度对模块电压和输出功率的影响是,在安装MPPT系统之后,光伏模块的电压输出可以保持在等于12 V的所需最大值附近。与先前安装的MPPT系统相比,输出功率值下降。这是由无法容纳输出电压值的输出电流值引起的。为了使输出电流值足以产生最大输出功率,需要相应的负载量。

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