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An Explicit Multiexponential Model as an Alternative to Traditional Solar Cell Models With Series and Shunt Resistances

机译:显式多指数模型可以替代传统的具有串联电阻和分流电阻的太阳能电池模型

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摘要

Classical analyses of various conventional solar cell models are examined. They are unified through the separation of their linear and nonlinear components and the application of Thevenin''s theorem to the linear terms. An explicit multiexponential model with series and shunt resistances is proposed as an alternative to conventional implicit multiexponential models commonly used to describe significant parallel conduction mechanisms in real solar cells. The proposed model is better suited than conventional models for repetitive simulation applications because of its inherently higher computational efficiency. Its explicit nature is a very useful feature for direct analytic differentiation and integration. The model''s applicability has been assessed by parameter extraction and subsequent playback using synthetic I–V characteristics of a hypothetical solar cell at various illumination levels chosen purely for illustrative purposes.
机译:检查了各种常规太阳能电池模型的经典分析。通过分离线性和非线性成分以及将戴维南定理应用于线性项来统一它们。提出了一种具有串联电阻和分流电阻的显式多指数模型,以替代通常用于描述实际太阳能电池中重要的并联传导机制的常规隐式多指数模型。由于其固有的更高的计算效率,因此所提出的模型比常规模型更适合于重复性仿真应用。它的显式性质对于直接分析区分和集成而言是非常有用的功能。该模型的适用性已通过参数提取和随后的回放进行了评估,这些回放是使用假设太阳能电池在各种照明级别(仅为了说明目的而选择)的合成I–V特性进行合成的。

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