一种新的太阳能树最大功率点跟踪算法

K. Gaikwad, Smita Lokhande
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引用次数: 11

摘要

与传统发电厂相比,可再生能源发电厂具有更多的优势。具体来说,太阳能无处不在,而且是免费的,但挑战在于如何从可用的能源中提取最大的能量。太阳能电池是一种非线性的电能来源,因此使用DC-DC转换器实现各种算法,如Perturb & Observe,增量电导等,以从中提取最大功率。这些算法在输出中产生振荡。该算法利用太阳辐照度和温度的反馈来避免振荡。太阳能电池板的内阻取决于温度、辐照度等因素。在某一特定时刻,太阳能电池板的内阻是通过传感器的辐照度和温度值来计算的。在该工况下,计算了太阳能帆板的所有相关参数,并计算了太阳能帆板的内阻。DC-DC变换器根据其占空比将负载电阻转移到其输入端。所提出的控制策略将设定变流器的占空比,使转移负载电阻与太阳能电池板的内阻相匹配。因此,根据最大功率转移定理,当转移负载电阻等于内阻时,太阳能电池板将提取最大功率。本文提出的最大功率点跟踪(MPPT)算法实现了这一条件。控制系统是连续监测辐照度和温度,如果有变化,那么只有它会尝试跟踪MPPT。本文讨论了基于DC-DC变换器的MPPT算法的设计、仿真和实际实现。
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Novel maximum power point tracking (MPPT) algorithm for solar tree application
Renewable power plant has more advantageous over conventional power plant. Specifically, Solar energy is available everywhere, free of cost but challenge is to extract maximum power from the available energy. Solar cell is a non-linear source of electrical energy, hence various algorithms like Perturb & Observe, Incremental Conductance etc. are implemented using DC-DC converter to extract maximum power from it. These algorithms create oscillations in output. The proposed algorithm takes feedback of irradiance of sunlight and temperature to avoid oscillations. Internal resistance of the solar panel is depends on factors like temperature, irradiance etc. At a particular instant, internal resistance of solar panel is calculated by sensing irradiance and temperature values from sensor. On that operating condition, all dependent parameters of solar panel are calculated and internal resistance of solar panel is calculated. DC-DC converter transfers the load resistance to its input depending upon its duty cycle. The proposed control strategy will set the duty cycle of converter so as to match transferred load resistance with internal resistance of solar panel. Hence by the maximum power transfer theorem, maximum power will extracts from the solar panel when transferred load resistance is equal to the internal resistance. This condition is achieved by this proposed maximum power point tracking (MPPT) algorithm. Control System is continuously monitoring irradiance and temperature, if there is change in it then only it will try to track MPPT. This paper discusses about the design, simulation and practical implementation of MPPT algorithm using DC-DC Converter.
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