Hi Lukas,
Congratulations on creating this incredible project! I learned a lot by reading your articles and your codes.
I have a lot of interest in photovoltaics and that's why I'm working on a project based on PV-Hawk that will be applied on the college campus where I graduated.
I realized that PV-Hawk needs thermal and optical images to be separated (I think you used the Flirpy library for this). However, I discovered a python library called Flyr which can extract thermographic and optical images from the original image taken by the FLIR thermal camera. I believe that adding this library to PV-Hawk stack is interesting not only for that, but also for many other features, such as:
-
Possibility of extracting and modifying the metadata responsible for creating thermograms (emissivity, distance to the object of interest, etc.);
-
Different ways of rendering the image (picture-in-picture, edge emphasis, and masking).
What do you thing about it?
I look forward to your reply!
Hi Lukas,
Congratulations on creating this incredible project! I learned a lot by reading your articles and your codes.
I have a lot of interest in photovoltaics and that's why I'm working on a project based on PV-Hawk that will be applied on the college campus where I graduated.
I realized that PV-Hawk needs thermal and optical images to be separated (I think you used the Flirpy library for this). However, I discovered a python library called Flyr which can extract thermographic and optical images from the original image taken by the FLIR thermal camera. I believe that adding this library to PV-Hawk stack is interesting not only for that, but also for many other features, such as:
Possibility of extracting and modifying the metadata responsible for creating thermograms (emissivity, distance to the object of interest, etc.);
Different ways of rendering the image (picture-in-picture, edge emphasis, and masking).
What do you thing about it?
I look forward to your reply!