Approximation of a photovoltaic module model using fractional and integral polynomials

E. Ortiz-Rivera
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引用次数: 8

Abstract

In this paper, a novel method is presented using fractional polynomials to approximate the performance for a PVM where the shape, boundary conditions and performance of the physical system are satisfied. The use of fractional polynomials will provide an analytical solution to determine the optimal voltage, Vop, optimal current, Iop, and maximum power, Pmax for the PVM operation. Also, this paper proposes a second method to approximate a fractional polynomial by a sufficiently close integer polynomial. Several examples are shown and verified using the manufacturer data sheets of different PVM's. Finally, the proposed methods are excellent to approximate the PVM's I-V Curves and provide a different way to approximate analytically the PVM's optimal voltage to produce the PVM's maximum power that it is not possible to solve using differential calculus.
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利用分数和积分多项式逼近光伏组件模型
在满足物理系统的形状、边界条件和性能的情况下,提出了一种利用分数阶多项式近似PVM性能的新方法。分数阶多项式的使用将提供一个解析解来确定PVM操作的最佳电压,Vop,最佳电流,Iop和最大功率,Pmax。此外,本文还提出了用一个足够接近的整数多项式逼近分数阶多项式的第二种方法。使用不同PVM的制造商数据表显示并验证了几个示例。最后,所提出的方法非常适合于近似PVM的I-V曲线,并提供了一种不同的方法来解析近似PVM的最佳电压,以产生PVM的最大功率,这是不可能用微分法求解的。
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