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Distributed electrical network modelling approach for spatially resolved characterisation of photovoltaic modules

机译:用于光伏模块的空间分辨特征的分布式电网建模方法

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摘要

Distributed electrical modelling and simulation plays an important role in investigating local operating points and the overall power generation of photovoltaic (PV) modules. A PV module is a three-dimensional device in which inhomogeneities can cause a non-uniform performance and hence, electrical mismatches which consequently reduce the overall power generation. Distributed modelling and simulation can be used to identify local electrical properties and their impacts on the power output. In this study, a flexible, distributed electrical network modelling approach is presented. The proposed approach introduces a hierarchical architecture built up from the diode model-based sub-cell level to the module level. A PV-oriented nodal analysis solver is developed to enable the spatially resolved quantitative analysis of electrical operating points by given local properties including irradiance, temperature, series resistance, shunt resistance and ideality factor. The approach has been verified by PSpice software. The case studies have shown that this modelling and simulation tool can be used to analyse spatially resolved characterisation results and to predict global and distributed operating points under different conditions.
机译:分布式电气建模和仿真在调查本地工作点和光伏(PV)模块的整体发电量方面起着重要作用。 PV模块是三维设备,其中不均匀会导致性能不均匀,从而导致电气失配,从而降低了整体发电量。分布式建模和仿真可用于识别局部电性能及其对功率输出的影响。在这项研究中,提出了一种灵活的分布式电网建模方法。所提出的方法引入了从基于二极管模型的子单元级别到模块级别构建的分层体系结构。开发了一种面向PV的节点分析求解器,可以通过给定的局部特性(包括辐照度,温度,串联电阻,分流电阻和理想因子)对电气工作点进行空间分辨的定量分析。该方法已通过PSpice软件验证。案例研究表明,该建模和仿真工具可用于分析空间分辨的表征结果,并预测不同条件下的全局和分布式工作点。

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