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Novel optimized method for maximum power point tracking in PV systems using Fractional Open Circuit Voltage technique

机译:使用分数开路电压技术的光伏系统最大功率点跟踪的新型优化方法

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The paper proposes new improved MPPT measurement method based on the conventional Fractional Open Circuit Voltage (FOCV) method, where the maximum power point voltage is estimated by continuous measuring of PV panel's open circuit voltage and calculation of the voltage factor. In the proposed Semi-Pilot Cell (SPC-FOCV) the measurements of the open circuit voltage are performed on one PV cell which is located at the edge of PV panel. When there is no measurement of the open circuit voltage, the PV panel configuration is unchanged and all PV cells inside the panel supply power to the load. During the measurement, the semi-pilot cell is disconnected from the panel by a pair of transistors and bypassed by the bypass diode in order to ensure proper operation of other cells in the panel. This method is intended for application in small PV systems. The proposed method was analyzed and validated by extensive simulation results. It was proved that it can precisely estimate maximum power point voltage. The SPC-FOCV method overcomes the disadvantages of the conventional FOCV and pilot cell FOCV methods. By implementing the proposed method, more power can be supplied to the load with higher efficiency than by the conventional FOCV and pilot cell methods.
机译:本文提出了一种新的改进的MPPT测量方法,该方法基于常规的分数开路电压(FOCV)方法,该方法通过连续测量PV面板的开路电压并计算电压因数来估算最大功率点电压。在建议的半导频电池(SPC-FOCV)中,开路电压的测量是在一个位于PV面板边缘的PV电池上进行的。当没有开路电压的测量值时,PV面板的配置不变,面板内部的所有PV电池均向负载供电。在测量过程中,半导频电池通过一对晶体管与面板断开连接,并由旁路二极管旁路,以确保面板中其他电池正常工作。该方法适用于小型光伏系统。大量的仿真结果对提出的方法进行了分析和验证。事实证明,它可以精确估计最大功率点电压。 SPC-FOCV方法克服了常规FOCV和导频单元FOCV方法的缺点。通过实施所提出的方法,可以比传统的FOCV和导频电池方法以更高的效率向负载提供更多的功率。

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