Integrated electric propulsion satellite platform position holding electric thruster redundant configuration method

An electric thruster and satellite platform technology, which is applied to the propulsion system devices of space navigation aircraft, aircraft, and space navigation aircraft, etc., can solve the problems of reducing the working life and other problems, and meet the requirements of reducing the size and life of thrust, good adaptability, The effect of increasing adaptability

Active Publication Date: 2017-05-24
CHINA ACADEMY OF SPACE TECHNOLOGY
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The technical problem solved by the present invention is: to overcome the deficiencies in the prior art, and provide a redundant configuration method for electric thrusters in the position of the all-elect...

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  • Integrated electric propulsion satellite platform position holding electric thruster redundant configuration method
  • Integrated electric propulsion satellite platform position holding electric thruster redundant configuration method
  • Integrated electric propulsion satellite platform position holding electric thruster redundant configuration method

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Embodiment Construction

[0028] Aiming at the deficiencies in the existing technology of all-electric propulsion satellites, the present invention proposes a redundant layout method of electric thrusters aimed at maintaining the satellite platform's in-orbit position, which can effectively solve the problem of thruster failure in existing all-electric propulsion satellite platforms , The problem of reducing the working life, the method of the present invention will be described in detail below in conjunction with the accompanying drawings.

[0029] like figure 1 It is a schematic diagram of the layout of the electric thrusters of the all-electric propulsion satellite of the present invention. The corresponding thruster layout plan of the present invention includes that the satellite is equipped with three electric thrusters on the back floor near the south plate and the north plate, and each thruster is equipped with thrust direction adjustment. mechanism. A total of six electric thrusters are config...

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Abstract

The invention provides an integrated electric propulsion satellite platform position holding electric thruster redundant configuration method. Firstly, a satellite ground board rectangular coordinate system is built; secondly, the side, close to a south board, of a satellite ground board is provided with three electric thrusters, and the side, close to a north board, of the satellite ground board is provided with three electric thrusters; thirdly, work areas of the electric thrusters are generated respectively under the condition that all the electric thrusters work or some electric thrusters break down, ignition is conducted according to the work areas of the electric thrusters, and the electric thruster redundant configuration method is implemented. By arranging the six electric thrusters to keep the south, north, east and west positions of the satellite on-orbit period and complete momentum unloading together, requirements of an integrated electric propulsion satellite for thrust strength and the service life of the thrusters can be effectively reduced, adaptability of the integrated electric propulsion satellite to the electric thrusters is improved, the problems that a single principal part thruster makes an application strategy complex if losing efficacy and propellant consumption demand is increased are solved, and the method has the advantage of being good in adaptability to failure of the single thruster.

Description

technical field [0001] The invention relates to a layout method of electric thrusters for three-axis stable geostationary orbit satellites, in particular to a method for redundant configuration of electric thrusters for maintaining the position of an all-electric propulsion satellite platform, aiming at completely utilizing electric propulsion to complete the transfer orbit change task, All-electric propulsion satellite for geosynchronous orbit attitude and orbit control missions. Background technique [0002] Due to its high specific impulse and fuel-saving features, electric thrusters have gradually become the standard configuration of geostationary orbit satellites, and the functions of electric thrusters have gradually expanded from a single position maintenance task to orbit transfer, position maintenance, and angular momentum unloading. Satellite platforms that all use electric propulsion systems to complete orbit transfer tasks, synchronous orbit attitude and orbit co...

Claims

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Application Information

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IPC IPC(8): B64G1/24B64G1/40
CPCB64G1/242B64G1/40
Inventor 王敏李强仲小清梁新刚李烽胡照
Owner CHINA ACADEMY OF SPACE TECHNOLOGY
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