Sunspot detection and tracking using image processing techniques
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North-West University (South Africa)
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Abstract
Over the past five decades, space weather forecasting has gained significant interest since mankind started
exploring the solar system using highly developed technology. Power and communication systems are
critical for modern society to function optimally. However, these systems are often interrupted by natural
events, such as solar activity. Examples of these solar events are solar
ares and coronal mass ejections.
Space weather research has taken a major role in the prediction of solar activity, especially since these
events are the cause of interruptions of wireless communications systems, railway signalling, high voltage
power transmission grids, and satellites.
Systems that can detect and track sunspots, as manifestations of solar activity, have become frequent over
the past few years. The images used in this study to detect sunspots were downloaded from the National
Aeronautics and Space Administration did not need any changes to be made to the images and could
be used immediately for implementation in this study. Three object detection and one object tracking
algorithms were implemented for the detection and tracking of sunspots in this study. The first two object
detection algorithms were both implemented and tested on the same image and then applied to different
images to test the validity of the algorithms. The first algorithm's detection was based on finding the
edges of sunspots and the second was based on finding segments in the image that resemble one of the nine
chosen templates. The third algorithm was implemented on the extracted results of the first algorithm.
The overall results obtained from the study show that the implemented algorithms prove to be accurate
in comparison to the other studies' results found in Chapter 5. However, the definition of accuracy is
different for detection and tracking and is discussed with the results. For future work, other traditional
image processing techniques may be implemented to improve the results.
Sustainable Development Goals
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MSc (Computer Science), North-West University, Potchefstroom Campus
