Agile satellite dynamic imaging posture adjustment method

An adjustment method and dynamic imaging technology, applied in the direction of using feedback control, etc., can solve the problems of limited imaging width, single imaging task, and inability to achieve imaging, and achieve the effect of solving image shift, solving drift angle, and improving coverage ability.

Active Publication Date: 2013-07-24
AEROSPACE DONGFANGHONG SATELLITE
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Problems solved by technology

[0005] (1) In the imaging mode mentioned in the article, the imaging width of the spaceborne remote sensor is small, usually a small circular or rectangular area, which cannot effectively cover a wide range of area targets, and the imaging task is single;
[0006] (2) The attitude compensation technology in this paper is based on the ground-oriented push-broom imaging method. In addition to the drift angle control, the attitude compensation technology of the satellite has a nominal value of pitch and roll angular velocity of zero, which cannot realize imaging during the three-axis attitude maneuvering process.
[0007] (3) In the ground-oriented push-broom imaging method, due to the limitation of the imaging width of the optical remote sensor, a multi-strip splicing imaging method is used for large-scale area imaging, and the imaging width is limited
[0009] Based on the above analysis, the attitude adjustment method of the ground-oriented push-broom imaging method cannot meet the requirements of dynamic imaging

Method used

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  • Agile satellite dynamic imaging posture adjustment method
  • Agile satellite dynamic imaging posture adjustment method
  • Agile satellite dynamic imaging posture adjustment method

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Embodiment Construction

[0030] The principle of the attitude adjustment method of the present invention is as follows: for wide imaging requirements, when the satellite is orbiting, the roll angle of the satellite is controlled to realize push-broom imaging in the east-west direction; at the same time, the pitch angle and angular velocity of the satellite are controlled to compensate for orbital motion The implicated velocity projected on the surface; finally, on the basis of TDICCD imaging principle, adjust the yaw angle of the satellite to realize the control of the drift angle.

[0031] Such as figure 1 As shown, the wide dynamic imaging process is as follows: Push-broom imaging is performed perpendicular to the track direction; the initial imaging time is t 1 , the satellite is at S 1 , the optical axis points to the ground target point D 1 ; While the satellite is rolling push-broom imaging, due to the implicated movement of the orbital motion, it is necessary to control the pitch direction ...

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Abstract

The invention discloses an agile satellite dynamic imaging posture adjustment method which can achieve wide-width imaging in a posture adjusting process. Firstly, a rolling angle of a satellite is adjusted to achieve push-scan imaging in the east-west direction; then, a pitch angle and pitch angular speed of the satellite are adjusted to compensate transport velocity of rail motion on the earth surface; and finally, a yaw angle of the satellite is adjusted to control a drift angle. The posture adjustment method can be applied to dynamic imaging technique for the satellite to open optical effective load to image in a triaxial attitude maneuver process. The covering power of the satellite in the east-west longitude direction in one-loop transit is improved through real-time posture adjustment. The covering width in the east-west longitude direction can reach more than 350km.

Description

technical field [0001] The invention relates to an attitude adjustment method for agile satellite dynamic imaging. Background technique [0002] The dynamic imaging of agile satellites means that the satellite turns on the optical payload and performs imaging during the three-axis attitude maneuver, and adjusts the optical axis to the ground in real time during the imaging process to achieve complex imaging tasks. Due to the combined effect of three-axis attitude maneuvering and orbital motion, the execution efficiency of satellite imaging has been greatly improved. Therefore, dynamic imaging technology will surely become an important direction for the development of aerospace military satellites in the future. [0003] The current satellite strip imaging generally adopts the ground-oriented push-broom imaging mode. The push-broom imaging direction is consistent with the orbiting direction, and the formed strips are basically parallel to the orbit direction. The imaging wid...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G05D3/12
Inventor 黄群东黄琳杨芳赵键李松明
Owner AEROSPACE DONGFANGHONG SATELLITE
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