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Coupling Analysis and Cross-Feedback Control of Three-Axis Inertially Stabilized Platform with an Active Magnetic Bearing System
by
Wen, Tong
, Xiang, Biao
, Wong, Waion
in
Coordinate transformations
/ Coupling
/ Feedback control
/ Friction
/ Gimbals
/ Magnetic bearings
/ Random vibration
/ Remote sensing
/ Rolling motion
/ SISO (control systems)
/ Stabilized platforms
/ Three axis stabilization
/ Vibration analysis
/ Vibration control
/ Yaw
2020
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Coupling Analysis and Cross-Feedback Control of Three-Axis Inertially Stabilized Platform with an Active Magnetic Bearing System
by
Wen, Tong
, Xiang, Biao
, Wong, Waion
in
Coordinate transformations
/ Coupling
/ Feedback control
/ Friction
/ Gimbals
/ Magnetic bearings
/ Random vibration
/ Remote sensing
/ Rolling motion
/ SISO (control systems)
/ Stabilized platforms
/ Three axis stabilization
/ Vibration analysis
/ Vibration control
/ Yaw
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Coupling Analysis and Cross-Feedback Control of Three-Axis Inertially Stabilized Platform with an Active Magnetic Bearing System
by
Wen, Tong
, Xiang, Biao
, Wong, Waion
in
Coordinate transformations
/ Coupling
/ Feedback control
/ Friction
/ Gimbals
/ Magnetic bearings
/ Random vibration
/ Remote sensing
/ Rolling motion
/ SISO (control systems)
/ Stabilized platforms
/ Three axis stabilization
/ Vibration analysis
/ Vibration control
/ Yaw
2020
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Coupling Analysis and Cross-Feedback Control of Three-Axis Inertially Stabilized Platform with an Active Magnetic Bearing System
Journal Article
Coupling Analysis and Cross-Feedback Control of Three-Axis Inertially Stabilized Platform with an Active Magnetic Bearing System
2020
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Overview
An active magnetic bearing (AMB) system is used to suspend the yaw gimbal of three-axis inertially stabilized platform (ISP) to minimize the friction. The dynamic functions of three gimbals in ISP are developed. The base coupling at dynamic base plate is stronger than that at static base plate, and the gimbal coupling among three gimbals increases with the number of unlocked gimbals. Therefore, a cross-feedback control scheme is designed to minimize the base coupling and the gimbal coupling, and then the multi-input multioutput system of three-axis ISP with coupling terms is simplified into three decoupled single-input single-output systems. Experimental results verify that the yaw gimbal suspended by AMB system has better vibration isolation ability than the roll gimbal supported by mechanical bearing, and the gimbal coupling and the base coupling are effectively suppressed by the cross-feedback control scheme.
Publisher
Hindawi Publishing Corporation,Hindawi,John Wiley & Sons, Inc,Wiley
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