TY - JOUR
T1 - Gimbal torque and coupling torque of six degrees of freedom magnetically suspended yaw gimbal
AU - Tong, Wen
AU - Xiang, Biao
AU - Wong, Waion
N1 - Publisher Copyright:
© 2019
PY - 2020/2/15
Y1 - 2020/2/15
N2 - When the three-axis intertially stabilized platform (ISP) realizes the fast response of yaw gimbal, coupling torques among three gimbals cause negative influence on the attitude stabilization precision of yaw gimbal which supports the imaging payloads. Therefore, the gimbal torque of six degrees of freedom (DOFs) yaw gimbal with the magnetic suspension system is used to compensate coupling toques acting on it in this article. The dynamics models of yaw gimbal and three-axis ISP are developed, and then coupling torques among three gimbals are analyzed, it varies with motion states of the base plate. Moreover, the characteristics about gimbal torque generated by the magnetic suspension system are studied, it can accurately track the control input of magnetic suspension system. Finally, experimental results indicate that the gimbal torque of magnetic suspension system can effectively compensate coupling torques acting on the yaw gimbal, so the attitude stabilization precision of yaw gimbal is improved.
AB - When the three-axis intertially stabilized platform (ISP) realizes the fast response of yaw gimbal, coupling torques among three gimbals cause negative influence on the attitude stabilization precision of yaw gimbal which supports the imaging payloads. Therefore, the gimbal torque of six degrees of freedom (DOFs) yaw gimbal with the magnetic suspension system is used to compensate coupling toques acting on it in this article. The dynamics models of yaw gimbal and three-axis ISP are developed, and then coupling torques among three gimbals are analyzed, it varies with motion states of the base plate. Moreover, the characteristics about gimbal torque generated by the magnetic suspension system are studied, it can accurately track the control input of magnetic suspension system. Finally, experimental results indicate that the gimbal torque of magnetic suspension system can effectively compensate coupling torques acting on the yaw gimbal, so the attitude stabilization precision of yaw gimbal is improved.
KW - Attitude stabilization precision
KW - Coupling torque
KW - Gimbal torque
KW - Magnetic suspension system
UR - https://www.scopus.com/pages/publications/85074795756
U2 - 10.1016/j.ijmecsci.2019.105312
DO - 10.1016/j.ijmecsci.2019.105312
M3 - 文章
AN - SCOPUS:85074795756
SN - 0020-7403
VL - 168
JO - International Journal of Mechanical Sciences
JF - International Journal of Mechanical Sciences
M1 - 105312
ER -