SYSTEMS AND METHODS FOR AUTONOMOUS DRONE-BASED SOLAR PANEL MAINTENANCE
Systems and methods for autonomous drone-based solar panel maintenance may utilize drone positioning, image analysis, and processing to determine solar panel angle and clarity.
1 . A system for autonomous drone-based solar panel maintenance, comprising:
an electronic processing device;
a sensor device in communication with the electronic processing device;
a location device in communication with the electronic processing device;
a propulsion device in communication with the electronic processing device; and
a non-transitory data storage device in communication with the electronic processing device, the non-transitory data storage device storing solar panel maintenance data and instructions that when executed by the electronic processing device, result in:
identifying, based on astrological data, a navigational route that crosses between the sun and a target solar panel;
maneuvering, by selectively activating the propulsion device, the sensor along the navigational route and to a location proximate to the solar panel;
acquiring, by the sensor device, data descriptive of the location;
identifying, by comparing the data descriptive of the location to predefined solar panel data, at least one solar panel;
identifying, by comparing a subset of the data descriptive of the location that corresponds to the at least one solar panel to the predefined solar panel data, at least one solar panel feature;
measuring, by selectively activating the sensor device, at least one solar panel feature;
computing, based on the measurement of the at least one solar panel feature and a current location identified by the location device, an orientation of the at least one solar panel.
2 . The system for autonomous drone-based solar panel maintenance of claim 1 , wherein the at least one solar panel feature comprises a reflection of the sun.
3 . The system for autonomous drone-based solar panel maintenance of claim 1 , wherein the at least one solar panel feature comprises a reflection of the moon.
4 . The system for autonomous drone-based solar panel maintenance of claim 1 , wherein the identifying of the at least one solar panel feature comprises matching the subset of the data descriptive of the location that corresponds to the at least one solar panel to the predefined solar panel data and wherein the predefined solar panel data comprises a shape file descriptive of a shape of a shadow.
5 . The system for autonomous drone-based solar panel maintenance of claim 1 , wherein the measuring of the at least one solar panel feature comprises measuring an angle of the at least one solar panel feature with respect to a datum.
6 . The system for autonomous drone-based solar panel maintenance of claim 1 , wherein the instructions, when executed by the electronic processing device, further result in:
measuring, by selectively activating the sensor device, a level of reflection of the at least one solar panel.