Xiao-tao CAO, Wei-fan YANG, Han WANG, et al. Mixed-sensitivity-based robust control of secondary mirror adjustment mechanism for space telescopes[J]. Optics and precision engineering, 2018, 26(5): 1113-1123.
DOI:
Xiao-tao CAO, Wei-fan YANG, Han WANG, et al. Mixed-sensitivity-based robust control of secondary mirror adjustment mechanism for space telescopes[J]. Optics and precision engineering, 2018, 26(5): 1113-1123. DOI: 10.3788/OPE.20182605.1113.
Mixed-sensitivity-based robust control of secondary mirror adjustment mechanism for space telescopes
Secondary mirror adjustment mechanisms are core elements of active optics used for the adjustment of space telescopes. For real-time rapid adjustments in orbit
great demands are put on their adjusting accuracy and dynamic characteristics. Because of nonlinearity
uncertainty
disturbances
and coupling of the system
sufficient control cannot be easily achieved by traditional methods based on intermixing PID systems and inverse kinematics. Focusing on this problem
an uncoupled electromechanical model was proposed by transforming the joint couple dynamics into external disturbances. The model uncertainty was represented by the multiplicative uncertainty resulting from the system identification
and the mixed sensitivity function was designed according to the model error bound and performance index. By using the extended method to deal with the imaginary axis pole
the complex dynamic system was transformed into a stacked S/T/KS problem. A robust controller was designed by MATLAB and a digital algorithm was realized using DSP. The improved robustness
disturbance rejection
and dynamic characteristics were verified by both simulations and experimental results
proving that space-reliable application can be achieved.
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references
CONTOS A R, ACTON D S, BARTO A A, et al .. Verification of the James Webb Space Telescope (JWST) wavefront sensing and control system[J]. SPIE , 2008, 7010:70100S.
LASLANDES M, HUGOT E, FERRARI M, et al .. Space active optics:toward optimized correcting mirrors for future large spaceborne observatories[J]. Proceedings of SPIE , 2011, 8167:816713.
YUE D. Co - phasing of the Segmented Telescope and Image Retrieval Based on Phase Diversity Algorithm [D]. Changchun: Graduate University of Chinese Academy of Sciences (Changchun Institute of Optics, Fine Mechanics and Physics), 2016. (in Chinese)
WU Y P, ZHANG T X, SANG N, et al .. Imaging of active optical imaging system with a wide field of view[J]. Opt. Precision Eng ., 2000, 8(2):106-109. (in Chinese)
BELYP Y. The Design and Construction of Large Optical Telescopes [M]. New York:Springer, 2003.
CAO X T, SUN T Y, ZHAO Y L, et al .. Current status and development tendency of image stabilization system of large aperture space telescope[J]. Chinese Optics , 2014, 7(5):739-748. (in Chinese)
GU Y Y, HUO Q, LI A, et al .. Six DOF platform applied in ground test of optical remote sensor alleviation margin in satellite micro-vibration environment[J]. Opt. Precision Eng ., 2016, 24(9):2200-2207. (in Chinese)
DENG S, JING F SH, LIANG Z Z, et al .. Research on pose distribution algorithm of FAST feed support system[J]. Opt. Precision Eng ., 2017, 25(2):375-384. (in Chinese)
ZHANG J X, AN Q CH, LI J F, et al .. Third mirror Stewart platform of TMT based on mechanism condition number[J]. Opt. Precision Eng ., 2014, 22(4):890-896. (in Chinese)
MCINROYJ E, HAMANN J C. Design and control of flexure jointed hexapods[J]. IEEE Transactions on Robotics and Automation , 2000, 16(4):372-381.
KELLY R, SANTIBÁÑEZ V, LORÍA A. Control of Robot Manipulators in Joint Space [M]. London:Springer, 2005.
YANG W F, XU SH Y, CAO X T, et al .. Design of scanning control system for space optical remote sensor[J]. Opt. Precision Eng ., 2014, 22(2):397-405. (in Chinese)
SKOGESTAD S, POSTLETHWAITE I. Multivariable Feedback Control:Analysis and Design [M]. 2nd ed.. New York:John Wiley & Sons, 2001.
ZHOUK M, DOYLE J C. Essentials of Robust Control [M]. Upper Saddle River, NJ:Prentice Hall, 1999.
WANG T Y. Design of H ∞ Controller for Hydraulic Actuator of Heavy-load Legged Robot Joint [D]. Harbin: Harbin Institute of Technology, 2016. (in Chinese)