Georeferencing of Photovoltaic Modules from Aerial Infrared Videos using Structure-from-Motion
Lukas Bommes, Claudia Buerhop-Lutz, Tobias Pickel, Jens Hauch, and Christoph Brabec, Ian Marius Peters

TL;DR
This paper presents a method using incremental structure-from-motion to automatically georeference PV modules from aerial IR videos, significantly improving localization accuracy and processing efficiency for large-scale solar plants.
Contribution
It introduces a novel automated approach for georeferencing PV modules using IR videos and structure-from-motion, enhancing accuracy and throughput over previous methods.
Findings
Mapped 99.3% of 35,084 modules across multiple plants
Reduced module extraction misses by 18 times compared to prior work
Increased processing speed by a factor of 2.1 to 3.7
Abstract
To identify abnormal photovoltaic (PV) modules in large-scale PV plants economically, drone-mounted infrared (IR) cameras and automated video processing algorithms are frequently used. While most related works focus on the detection of abnormal modules, little has been done to automatically localize those modules within the plant. In this work, we use incremental structure-from-motion to automatically obtain geocoordinates of all PV modules in a plant based on visual cues and the measured GPS trajectory of the drone. In addition, we extract multiple IR images of each PV module. Using our method, we successfully map 99.3 % of the 35084 modules in four large-scale and one rooftop plant and extract over 2.2 million module images. As compared to our previous work, extraction misses 18 times less modules (one in 140 modules as compared to one in eight). Furthermore, two or three plant rows…
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Taxonomy
TopicsEnergy and Environment Impacts · Photovoltaic System Optimization Techniques · Solar Radiation and Photovoltaics
MethodsGreedy Policy Search
