A joint control method for the relative position and attitude of an aerospace vehicle on orbit
An aerospace vehicle and relative position technology, applied in three-dimensional position/course control, vehicle position/route/altitude control, control/adjustment system, etc., can solve problems such as strong repeatability, heavy workload, and poor task adaptability
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[0064] Below in conjunction with accompanying drawing and specific embodiment the present invention is described in further detail:
[0065] Such as figure 1 Shown is the flow chart of the joint control method for the relative position and attitude of the on-orbit operation of the present invention. The joint control method for the relative position and attitude of the aerospace vehicle of the present invention specifically includes the following steps:
[0066] (1) Determine the value of the control parameter
[0067] Control parameter design including maximum maneuvering angular acceleration maximum maneuvering acceleration Rotational damping ratio ξ and translational damping ratio ξ'.
[0068] (1), maximum maneuvering angular acceleration in the embodiment of the present invention The selection principle is 50% to 70% of the maximum angular acceleration that the actuator can produce to overcome various deviations;
[0069] (2), maximum maneuvering acceleration in th...
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