A star-based on-orbit absolute calibration method for space cameras
A space camera and stellar technology, applied in image data processing, measuring devices, instruments, etc., can solve the problems of increased manpower and material resources, long calibration intervals, etc., to achieve simple process, save calibration time, easy to arrange and repeatable Effect
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[0041] Below in conjunction with accompanying drawing and specific embodiment the present invention will be described in further detail:
[0042] Assuming that the radiance received by the space camera from the target scene in its instantaneous field of view is SRF, in the ideal case where all imaging links are linear systems, the schematic diagram of the energy transfer process of the system is as follows figure 2 as shown, figure 2 It is a schematic diagram of the transfer function of the space camera system of the present invention.
[0043] SRF=A 0 ·Ω det ·τ ota (λ)·R det (λ)·R elec (λ)·R A / D (λ)·E NL (λ)·τ noise (λ)·τ NL (λ)·Δλ
[0044] (1-1)
[0045] in:
[0046] A 0 - the effective area of the entrance pupil diameter of the space camera;
[0047] Ω det - the solid angle of the entrance pupil diameter of the space camera;
[0048] τ ota (λ)—the total transmittance of the optical system of the space camera including various optical elements;
[0049]...
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