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A precise PV module electrical model is also introduced.
The consequence is that the electrical model is linear.
Using the results of sensitivity analysis, the electrical model is improved by including two additional parameters.
An accurate PV module electrical model is presented based on the mathematical equations.
An equivalent electrical model is developed to analyze the sensor's behavior.
An improved electrical model is used to estimate the electrical parameters of a PV/T air collector.
A better electrical model is used to increase the calculations precision of PV/T air collector electrical parameters.
A detailed thermal and electrical model is developed to calculate the thermal and electrical parameters of a typical PV/T air collector.
A particular non-minimal state representation of the machine electrical model is derived and exploited to build the adaptive observer, based on a series parallel architecture.
The model relies on widely available weather parameters such as total horizontal solar radiation, ambient temperature, wind speed, etc. Validation of the electrical model is first carried out in real outdoor weather conditions comparing simulated and measured electrical current.
The analyses show that even though the models have varying characteristics of underlying physical principles (the electrical model is linear while the hydraulic model is non-linear), the results are within generally accepted engineering limits of similarity (10%).
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