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Online current-sensorless estimator for PV open circuit voltage and short circuit current

机译:用于PV开路电压和短路电流的在线无传感器估计

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摘要

The suggested paper presents a new method for the estimation of short circuit current (I-sc) and open-circuit voltage (V-oc) of the photovoltaic (PV) system. Moreover, a modified relation of reverse saturation current (I-s) is used to prevent the wrong estimation of I-sc and V-oc values at any point of the P-V curve. In addition, a new current-sensorless method of PV current estimation is used to further reduce the cost of the proposed technique. The accuracy of the proposed method is checked by testing on three different PV panels such as Yingli 245C-30b, Sharp NT-180U1, and Risen SYP-110S. Moreover, the fractional short circuit current (FSSC) and fractional open circuit voltage (FOCV) algorithms are also implemented using the proposed and conventional analytical method and their results are compared with each other. The proposed method is validated in the Matlab/Simulink and hardware experimentation. The results of the proposed method indicate the following advantages: (1) accurate prediction of the I-sc and V-oc values at any point of the P-V curve, (2) interruption free output power during the Isc and V-oc measurement, (3) accurate sensorless estimation of PV current, 4) no overshoot and undershoot in the tracked power of PV module, and 5) significant improvement in tracking efficiency by 38.33% for the FSSC algorithm and 28.2% for the FOCV algorithm, compared to the conventional analytical method.
机译:建议的论文提出了一种新方法,用于估计光伏(PV)系统的短路电流(I-SC)和开路电压(V-OC)。此外,反向饱和电流(I-S)的修改关系用于防止P-V曲线的任何点处的I-SC和V-OC值的错误估计。另外,使用新的PV电流估计的电流无传感器方法来进一步降低所提出的技术的成本。通过在诸如Yingli 245C-30B,Sharp NT-180U1和Risen Syp-110s的三种不同的PV面板上测试所提出的方法的准确性。此外,使用所提出的和传统的分析方法和传统的分析方法来实现分数短路电流(FSSC)和分数开路电压(FOCV)算法,并且它们的结果彼此比较。所提出的方法在Matlab / Simulink和硬件实验中验证。所提出的方法的结果表明以下优点:(1)对PV曲线的任何点的I-SC和V-OC值的精确预测,(2)ISC和V-OC测量期间的中断自由输出功率, (3)PV电流的精确无传感器估计,4)在PV模块的跟踪功率下没有过冲和下冲,5)对于FSSC算法的跟踪效率显着提高38.33%,对于FOCV算法的28.2%,与...相比常规分析方法。

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