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Parameter estimation technique for double-diode model of photovoltaic modules

机译:光伏组件双二极管模型的参数估计技术

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This paper proposes a parameter estimation technique for the double-diode electrical model based on the physical behavior of the photovoltaic (PV) module with respect to variations of the environmental conditions. There are several different techniques for PV parameter estimation. However, most of them identify the parameters for a specific irradiance and temperature. This means that different sets of parameters are found for each environmental condition, providing results that do not represent I-V curves correctly. Thus, the parameters provide only a mathematical representation with lack of physical meaning. In the proposed technique, it is necessary to execute the parameter estimation only once, because the model is valid for all range of values of the environmental conditions available on datasheets or experimental curves. Moreover, the restrictions imposed on each parameter makes the model capable of emulating the physical behavior of the PV module, particularly useful in fault diagnosis and predictive and corrective maintenance of PV systems. Comparison results based on datasheet and experimental curves are presented to verify the effectiveness of the proposed parameter estimation technique.
机译:本文提出了一种基于光伏(PV)模块相对于环境条件变化的物理行为的双二极管电模型参数估计技术。有几种不同的技术可用于PV参数估计。但是,它们中的大多数会确定特定辐照度和温度的参数。这意味着针对每种环境条件都可以找到不同的参数集,从而提供的结果不能正确代表I-V曲线。因此,参数仅提供缺乏物理意义的数学表示。在提出的技术中,仅需执行一次参数估计,因为该模型对于数据表或实验曲线上可用的环境条件的所有值范围均有效。此外,对每个参数施加的限制使模型能够模拟PV模块的物理行为,特别适用于PV系统的故障诊断以及预测性和纠正性维护。提出了基于数据表和实验曲线的比较结果,以验证所提出的参数估计技术的有效性。

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