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A magnetic levitation gyroscope with magnetic circuit decoupling

A technology of magnetic levitation gyroscope and magnetic circuit, applied in the direction of rotating gyroscope, etc., can solve the problems of low reliability of information and large error of mechanical gyroscope, and achieve the effect of improving sensitivity accuracy, eliminating friction and wear, and eliminating interference torque.

Active Publication Date: 2017-12-15
PLA PEOPLES LIBERATION ARMY OF CHINA STRATEGIC SUPPORT FORCE AEROSPACE ENG UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Reducing bearing interference torque is the primary key technology for manufacturing high-precision gyroscopes. Traditional mechanical gyroscopes have been eliminated in many fields due to large errors and low reliability of information provided.

Method used

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  • A magnetic levitation gyroscope with magnetic circuit decoupling
  • A magnetic levitation gyroscope with magnetic circuit decoupling
  • A magnetic levitation gyroscope with magnetic circuit decoupling

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Embodiment Construction

[0016] specific implementation plan

[0017] Such as figure 1 As shown, this kind of magnetic levitation gyroscope is mainly composed of two parts: a stator system and a rotor system. It is characterized in that the stator system mainly includes: a mandrel 1, a base 2, an upper protective bearing 3A, a lower protective bearing 3B, and a protective bearing lock nut 4 , radial magnetic bearing 5 stator, key 6, axial magnetic bearing 7 stator, motor 8 stator, deflection magnetic bearing 9 stator, displacement sensor 10; the rotor system mainly includes: radial magnetic bearing 5 rotor, axial magnetic bearing 7 rotor , motor 8 rotors, yaw magnetic bearing 9 rotors, flywheel body 11, upper protective bearing cover 12A, lower protective bearing cover 12B, radial magnetic bearing rotor lock nut 13, axial magnetic bearing inner rotor lock nut 14, axial magnetic bearing Bearing outer rotor lock nut 15, motor inner rotor lock nut 16, motor outer rotor lock nut 17, deflection magnetic b...

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PUM

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Abstract

The invention discloses a magnetically suspended gyroscope adopting the magnetic path decoupling design. The magnetically suspended gyroscope consists of a stator system and a rotor system, wherein the stator system mainly comprises a mandrel, a base, a protective bearing, a radial magnetic bearing stator, an axial magnetic bearing stator, a motor stator, a deflection magnetic bearing stator and a displacement sensor; the rotor system mainly comprises a flywheel body, a protective bearing cover, a radial magnetic bearing rotor, an axial magnetic bearing rotor, a motor rotor and a deflection magnetic bearing rotor. According to the magnetically suspended gyroscope, a magnetic bearing supporting technology is adopted, frictional wear caused by a mechanical bearing is avoided, and a magnetic path decoupling path of each channel of the magnetic bearing is adopted to eliminate disturbance torques of three translation controls of magnetic bearings to radial two deflection controls, so that sensing precision of the gyroscope is improved.

Description

technical field [0001] The invention relates to a magnetic levitation gyroscope with magnetic circuit decoupling, adopting magnetic bearing non-contact levitation support technology, avoiding the friction and wear caused by mechanical bearings, adopting the decoupling design of the magnetic circuit of each channel of the magnetic bearing, eliminating three magnetic bearings The interference torque of the translational control to the two radial deflection controls improves the sensitivity of the gyroscope, and is suitable for the attitude control system of a new generation of high-precision and long-life earth observation platforms, launch vehicles and ballistic missiles. technical background [0002] Inertial navigation system is widely used in the attitude control system of launch vehicles, ballistic missiles, spacecraft and other aircraft due to its advantages of completely autonomous navigation. As the core device of the inertial navigation system, the gyroscope is used t...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01C19/04G01C19/06G01C19/24
CPCG01C19/04G01C19/06G01C19/24
Inventor 任元王卫杰刘强樊亚洪缪存孝蔡远文姚红张立元邵琼玲王盛军
Owner PLA PEOPLES LIBERATION ARMY OF CHINA STRATEGIC SUPPORT FORCE AEROSPACE ENG UNIV
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