Experiments in processing lunar images. SC the winner?
Posted: Fri Apr 25, 2025 8:23 pm
There are so many alternative ways of processing and sharpening lunar images -- different deconvolution algorithms, alternative wavelet schemes and programs - let alone different parameters and values to optimise that it is effectively impossible to know whether any given chosen path was really the best.
Even beyond that it is anyway only a matter of opinion what is meant by 'the best'. At some point - improved resolution - can just start to look 'over-processed' and of course aesthetic considerations are usually more important -- but less well defined.
So I thought that would try some experiments alternatively processing just one dataset --a .SER capture of Plato -- which crater provides a way to quantify and compare the resolution of alternative images in terms of the number of different sized craterlets that are discernible within it.
The starting supposition was that because wavelet selection and deconvolution are two completely different methods that some mixture of the two might provide a better end result? So - broadly - I compared
a) Autostakkert (15% best frames) + Registax (using gaussian wavelets)
b) Autostakkert (15% best frames) + Registax (using gaussian wavelets)
c) Autostakkert (15% best frames) + Pixinsight (LR deconvolution or BlurExterminator) +/- Registax or +/- Pixinsight MMT (gaussian wavelets)
d) Sharpcap4.1 wavelets (15% frame selection and stacking 279)
To cut a long story short -- surprisingly to me anyway -- the quickest and simplest processing within Sharpcap supplied the highest resolution image in terms of the number of craterlets that could be discerned.
The Autostakkert routes provided good results -- and deconvolution provided good sharpening that was somewhat enhanced if preceded by a wavelet process but at least my hands and in terms of resolution Sharpcap won. Of course there are so many variables and it could well be that a more skilled user of LR deconvolution ,Registax, MMT could have done better but is was striking to me that SC worked so well and with such relative speed and simplicity.
Maybe the key is in the particular 'contrast' frame selection algorithm that SC is using in comparison with the Autostakkert selection algorithm?
The other thing that I found remarkable is that - apparently -- the resolution could so approach the theoretical maximum for a 12 inch telescope on what seemed a fairly average night that I am left wondering whether any improvement is possible even -- could stiller skies even have made much of a difference?
Tim
Images are from process d) Sharpcap alone and process c) using LR pixinsight deconvolution and MMT followed by a final step of Registax wavelets. Both images were also adjusted in Affinity for contrast, brightness etc. They ended up looking overall rather different in terms of final adjustments but the SC only processed appears to more clearly show most all of the craterlets -- but in some ways the other picture may be better? Any comments welcome --- undoubtedly I may have made mistakes in getting the best out of the images.
-------------------------------------------------------------------------------------------------
Capture of Plato SER file in Sharpcap was as described below viewtopic.php?t=8608
with the following details..
Output Format=SER file (*.ser)
Binning=1
Capture Area=1600x1200
Colour Space=RAW8
Gain=89
Exposure=16.7380ms
Timestamp Frames=Off
White Bal (B)=75
White Bal (R)=55
Brightness=15
Duration=105.075s
FrameCount=1862
ActualFrameRate=17.7207fps
TimeZone=+1.00
Even beyond that it is anyway only a matter of opinion what is meant by 'the best'. At some point - improved resolution - can just start to look 'over-processed' and of course aesthetic considerations are usually more important -- but less well defined.
So I thought that would try some experiments alternatively processing just one dataset --a .SER capture of Plato -- which crater provides a way to quantify and compare the resolution of alternative images in terms of the number of different sized craterlets that are discernible within it.
The starting supposition was that because wavelet selection and deconvolution are two completely different methods that some mixture of the two might provide a better end result? So - broadly - I compared
a) Autostakkert (15% best frames) + Registax (using gaussian wavelets)
b) Autostakkert (15% best frames) + Registax (using gaussian wavelets)
c) Autostakkert (15% best frames) + Pixinsight (LR deconvolution or BlurExterminator) +/- Registax or +/- Pixinsight MMT (gaussian wavelets)
d) Sharpcap4.1 wavelets (15% frame selection and stacking 279)
To cut a long story short -- surprisingly to me anyway -- the quickest and simplest processing within Sharpcap supplied the highest resolution image in terms of the number of craterlets that could be discerned.
The Autostakkert routes provided good results -- and deconvolution provided good sharpening that was somewhat enhanced if preceded by a wavelet process but at least my hands and in terms of resolution Sharpcap won. Of course there are so many variables and it could well be that a more skilled user of LR deconvolution ,Registax, MMT could have done better but is was striking to me that SC worked so well and with such relative speed and simplicity.
Maybe the key is in the particular 'contrast' frame selection algorithm that SC is using in comparison with the Autostakkert selection algorithm?
The other thing that I found remarkable is that - apparently -- the resolution could so approach the theoretical maximum for a 12 inch telescope on what seemed a fairly average night that I am left wondering whether any improvement is possible even -- could stiller skies even have made much of a difference?
Tim
Images are from process d) Sharpcap alone and process c) using LR pixinsight deconvolution and MMT followed by a final step of Registax wavelets. Both images were also adjusted in Affinity for contrast, brightness etc. They ended up looking overall rather different in terms of final adjustments but the SC only processed appears to more clearly show most all of the craterlets -- but in some ways the other picture may be better? Any comments welcome --- undoubtedly I may have made mistakes in getting the best out of the images.
-------------------------------------------------------------------------------------------------
Capture of Plato SER file in Sharpcap was as described below viewtopic.php?t=8608
with the following details..
Output Format=SER file (*.ser)
Binning=1
Capture Area=1600x1200
Colour Space=RAW8
Gain=89
Exposure=16.7380ms
Timestamp Frames=Off
White Bal (B)=75
White Bal (R)=55
Brightness=15
Duration=105.075s
FrameCount=1862
ActualFrameRate=17.7207fps
TimeZone=+1.00