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Closed-form Solution for the Performance Characteristics of a Photovoltaic Array/DC Motor System

机译:光伏阵列/直流电动机系统性能特性的封闭形式解决方案

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摘要

The current-voltage characteristics of the photovoltaic module are highly non-linear and depend, among other factors, on solar insolation level and on the module surface temperature. At a fixed value of insolation level to which the module is subjected, the terminal voltage decreases non-linearly as the load current increases. Most previous research in this area depends on non-linear mathematical equations relating the module voltage with its current. Therefore, numerical methods of analysis are required to determine the performance of a system in which a photovoltaic module, or array, is an element.rnIt is known that most operating points in such systems lie in the range between the no-load voltage and the maximum power point voltage of the photovoltaic module.rnIn this article, an approach is presented to obtain approximate closed-form analytical expressions for the current-voltage characteristics of any photovoltaic array in the range from no-load condition up to the maximum power point condition. The technique presented allows the direct method to predict the operating conditions of photovoltaic arrays when feeding loads, such as DC motors, without using tedious and time-consuming iterative numerical techniques, and the approximated current-voltage characteristics obtained analytically are compared with corresponding exact characteristics, with very close agreement obtained. To validate the proposed closed-form analytical expressions of the current-voltage characteristics of the photovoltaic array when feeding DC motors, the torque speed characteristics of different types of DC motors are obtained analytically and compared with the corresponding exact characteristics. The difference between the approximate and exact characteristics is very small.
机译:光伏模块的电流-电压特性是高度非线性的,除其他因素外,还取决于日照水平和模块表面温度。在模块承受的固定的日照水平值下,端子电压随着负载电流的增加而非线性减小。该领域中的大多数先前研究取决于将模块电压与其电流相关联的非线性数学方程式。因此,需要采用数值分析方法来确定以光伏模块或光伏阵列为元件的系统的性能。众所周知,此类系统中的大多数工作点都在空载电压与负载之间的范围内。光伏组件的最大功率点电压。rn本文提出一种方法,以获取从空载状态到最大功率点条件范围内任何光伏阵列的电流-电压特性的近似闭合形式的解析表达式。 。所展示的技术允许直接方法预测负载阵列(例如直流电动机)的光伏阵列的工作条件,而无需使用繁琐且耗时的迭代数值技术,并将通过解析获得的近似电流-电压特性与相应的精确特性进行比较。 ,并获得非常密切的同意。为了验证所提出的对直流电动机馈电时光伏阵列的电流-电压特性的闭合形式的解析表达式,通过分析获得了不同类型的直流电动机的转矩速度特性,并将其与相应的精确特性进行比较。近似特性和精确特性之间的差异很小。

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