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Prediction-data-based maximum-power-point-tracking method for photovoltaic power generation systems

机译:基于预测数据的光伏发电系统最大功率点跟踪方法

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A new maximum-power-point-tracking (MPPT) method for a photovoltaic (PV) power generation system was studied which can efficiently generate PV power even under changing weather conditions. In order to research a method suitable for the actual photovoltaic power system, PV characteristics of the maximum power point were measured for more than six months using a PV curve tracer. The actual maximum power points vary with conditions such as the surface temperature and the quantity of solar radiation. So, relationships between the maximum power point and circuit variables such as open circuit voltage and short circuit current were examined under various conditions appearing in the PV power generation system. It was found through measurements that the relationship between the maximum power and the current that the output power was almost a linear function in the actual solar arrays, regardless of the weather conditions. The MPPT method was proposed based on the obtained findings. It was verified through simulations and experiments that the proposed method enables the solar arrays to quickly generate the maximum power as determined by weather conditions at the time.
机译:研究了一种用于光伏(PV)发电系统的新的最大功率点跟踪(MPPT)方法,该方法即使在天气条件变化的情况下也可以有效地发电。为了研究一种适用于实际光伏发电系统的方法,使用PV曲线追踪器对最大功率点的PV特性进行了六个月以上的测量。实际最大功率点会随表面温度和太阳辐射量等条件而变化。因此,在光伏发电系统中出现的各种条件下,研究了最大功率点与电路变量(例如开路电压和短路电流)之间的关系。通过测量发现,在最大功率与电流之间的关系中,无论天气情况如何,实际太阳能电池阵列中的输出功率几乎都是线性函数。根据获得的发现提出了MPPT方法。通过仿真和实验证明,该方法能够使太阳能电池阵列快速产生最大功率,这是由当时的天气状况决定的。

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