No-gyro satellite gesture determination method based on tensor product multi-cell robust heavy hydrogen (H2) filtering
A multicellular robust, satellite attitude technology, applied in the field of aircraft, can solve problems such as large amount of calculation and complex algorithm
Patent Information
- Authority / Receiving Office
- CN · China
- Current Assignee / Owner
- Publication Date
- 2013-03-20
- Estimated Expiration
- Not applicable · inactive patent
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Abstract
Description
technical field
[0001] The invention relates to a method for determining the attitude of a gyroscope-free satellite based on tensor product multicellular robust H2 filtering, and belongs to the technical field of aircraft. Background technique
[0002] Star sensor is a kind of high-precision measuring instrument, which has been widely used in satellite attitude measurement system. In the past, due to the limitation of sensitivity and bandwidth, the star sensor could not be used as the main attitude sensor of the satellite in orbit. It needs to be combined with the gyroscope to establish a high-precision attitude reference and ensure the reliability of the satellite attitude information. In recent years, the combined approach of attitude determination based on gyro and attitude sensor has been widely used in engineering. But gyroscopes are expensive and may degrade or fail after long-term operation, and some satellites are limited by power and weight and cannot carry gyro co...
Examples
Embodiment Construction
[0112] In order to better illustrate the purpose and advantages of the present invention, further description will be given below in conjunction with the accompanying drawings and embodiments.
[0113] (1) Establish a state model and measurement model for satellite attitude determination
[0114] The task of determining the attitude of the satellite is to determine the orientation of the satellite's own system relative to the reference coordinate system. Selecting the inertial system as the reference coordinate system, the satellite attitude dynamics equation
[0115] J ω · + ω × Jω = T
[0116] In the formula, ω is the representation of the angular velocity of the satellite system relative to the inertial system in this system, J is the satellite inertial array, T is the rotational torque applied to the satellite, including the control torque and various extern...