Optics and Precision Engineering, Volume. 21, Issue 1, 124(2013)
Real-time compensation control of hysteresis based on Prandtl-Ishlinskii operator for GMA
[1] [1] XU P Y, YANG B T, MENG G, et al.. Modeling and parameter identification for giant magnetostrictive actuators applied in driving segmented mirrors [J]. Astronomical Research & Technology, 2010, 7(2) : 150-157.(in Chinese)
[2] [2] JIA ZH Y, WANG F J, ZHANG J, et al.. Hysteresis nonlinearity modeling and control of giant magnetostrictive actuator[J]. Chinese Journal of Mechanical Engineering, 2005, 41(7): 131-135. (in Chinese)
[4] [4] LI J Q. Research on a 3-D platform driven by giant Magnetostrictive actuator[D]. Shanghai: Shanghai Jiao Tong University, 2012. (in Chinese)
[5] [5] JANOCHA H, KUHNEN K. Real-time compensation of hysteresis and creep in piezoelectric actuators[J]. Sensors and Actuators, 1999, 79(2000): 83-89.
[7] [7] XU P Y. Research on the micro positioning control of giant magnetostrictive actuator[D]. Shanghai: Shanghai Jiao Tong University, 2010. (in Chinese)
[8] [8] ZHAO CH H, ZHANG CH ZH, WANG L G, et al.. Adaptive Signal Processing Techniques[M]. Beijing: Beijing Institute of Technology Press, 2007. (in Chinese)
[9] [9] WIDRW B, STEARMS S D. Adaptive Signal Processing [M]. New Jersey: Prentice Hall, 1985.
[10] [10] KUHNEN K. Modeling identification and compensation of complex hysteresis nonlinearities A modified prandtl-ishlinskii approach [J]. Europen Journal of Control, 2003, 9(4): 407-418.
[11] [11] KUHNEN K, JANOCHA H. Inverse feedforward controller for complex hysteretic nonlinearities in smart-material systems[J]. Control and Intelligent Systems, 2001, 29(3): 74-83.
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YANG Bin-tang, ZHAO Yin, PENG Zhi-ke, MENG Guang. Real-time compensation control of hysteresis based on Prandtl-Ishlinskii operator for GMA[J]. Optics and Precision Engineering, 2013, 21(1): 124
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Received: Aug. 2, 2012
Accepted: --
Published Online: Mar. 5, 2013
The Author Email: YANG Bin-tang (btyang@sjtu.edu.cn)