A prediction method for aerostat occultation based on inertial navigation
An aerostat and navigation star technology, applied in the field of atmospheric occultation detection, can solve the problems of wasting hardware resources, not considering visibility and real-time performance, and insufficient accuracy
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[0062] The test scenario is designed as follows: the flying height of the aerostat is 20km, the location is (-2244788.560, 4316130.960, 4141765.440), the UTC time is from 0:00:00 on September 27, 2018 to 16:00:00 on September 27, 2018, The aerostat receiving antenna argument w is 40 degrees, the antenna installation pitch angle is -4, and the occultation cut angle is -4.5 degrees, so the antenna pitch angle threshold is [-7.5,16]. Since the scene is designed to be three-axis stable, Therefore, the antenna and the direction of motion keep coincident, so the antenna azimuth angle threshold is [-20, 20]. If the antenna has attitude maneuvers, inertial navigation equipment needs to be introduced, plus the antenna azimuth changes caused by attitude maneuvers. With a time step of 60s, some forecast results and reception results are shown in the table below:
[0063]
[0064] Through hardware-in-the-loop simulation, the above table is obtained, which can prove that the occultation...
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