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The current architecture gives us 3 kernels which contain a part of the science information we are searching for. As these information have to be extracted from the noise, it can be interesting to gather the 3 different kernel outputs in a unique observable that cumulate the science information without cumulating the noise.
In order to have some clues about the most efficient gathering method, we can compute the modulated signal we should obtain in an ideal case (without noise) for an entire baseline rotation and in different scenarios of angular separation. The amplitude of the modulated signal will then give us an efficiency indicator of the gathering method, efficiency that can depend on the angular separation.
A next step will consist to study the noise sensitivity of these gathering methods.
The text was updated successfully, but these errors were encountered:
The current architecture gives us 3 kernels which contain a part of the science information we are searching for. As these information have to be extracted from the noise, it can be interesting to gather the 3 different kernel outputs in a unique observable that cumulate the science information without cumulating the noise.
In order to have some clues about the most efficient gathering method, we can compute the modulated signal we should obtain in an ideal case (without noise) for an entire baseline rotation and in different scenarios of angular separation. The amplitude of the modulated signal will then give us an efficiency indicator of the gathering method, efficiency that can depend on the angular separation.
A next step will consist to study the noise sensitivity of these gathering methods.
The text was updated successfully, but these errors were encountered: