PV Power Prediction and Investigation for Movable Solar PV Module
K A Manohar, Bansilal Bairwa, Udaykumar R. Yaragatti, C N Raghu
Abstract
K A Manohar, Bansilal Bairwa, Udaykumar R. Yaragatti, C N Raghu
Abstract
In this paper, A moving solar panel’s power output, and solar irradiation output are compared to a fixed solar panel experimentally. The solar module’s performance was first measured while it was in a fixed position and then dual axis solar tracker is employed to rotate the solar module to track the sun in two axes while the appropriate measurements were taken. solar modules using solar trackers will increase the output of annual solar irradiation that incident on the module surface compared to a fixed solar module at an optimum tilt angle. A moving solar module produces higher power output than a fixed module. Thus, it produces higher power output which means it utilizes the most of available solar radiation effectively.
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In this paper, A moving solar panel’s power output, and solar irradiation output are compared to a fixed solar panel experimentally. The solar module’s performance was first measured while it was in a fixed position and then dual axis solar tracker is employed to rotate the solar module to track the sun in two axes while the appropriate measurements were taken. solar modules using solar trackers will increase the output of annual solar irradiation that incident on the module surface compared to a fixed solar module at an optimum tilt angle. A moving solar module produces higher power output than a fixed module. Thus, it produces higher power output which means it utilizes the most of available solar radiation effectively.
Key concepts: Photovoltaic system, Power (physics), Computer science, Solar energy, Grid-connected photovoltaic power system, Environmental science, Automotive engineering, Solar power