[3] WANG G X,HE ZH. Control System Design[M].Beijing: Tsinghua University Press,2008.(in Chinese)
[5] YANG D D,WANG X B,HU F X,et al.. Disturbance rejection on a photoelectrical stabilized platform[C].Yantai: Proceedings of the 30th Chinese Control Conference,2011.(in Chinese)
[7] HAN J Q. Active disturbances rejection controller and its applications [J].Control and Decision ,1998, 13(1): 19-23.(in Chinese)
[8] GAO ZH Q. Disturbance rejection paradigm in control engineering[C]. Beijing: Proceedings of the 29th Chinese Control Conference,2010. (in Chinese)
[11] KE J,SU B K,ZENG M. Nonlinear stick-slip friction compensation for DC motors[J]. Journal of Harbin Institute of Technology, 2005,37(6):736-739.(in Chinese)
[12] ZHANG L L,HUANG Y,LV J F. Design and simulation of current-loop for servo of airborne electro-optical pointing and tracking platform[J]. Theory and Practice, 2003,23(6):15-21.( in Chinese)
[13] RUAN J H, YANG F G, LI Y B. Active disturbance-rejection control in vehicle acceleration[J]. Control Theory & Application, 2011,28(9):1189-1194. (in Chinese)
[14] HAN J Q. Active Disturbances Rejection Control Technique-the Technique for Estimating and Compensating the Uncertainties[M].Beijing: National Defense Industry Press,2009.(in Chinese)
[15] GAO Z Q. Scaling and bandwidth-parameterization based controller tuning[C].Proceedings of the American Control Conference,Evanston,IL:IEEE,2003:4989-4996.
[16] GAO Z Q. A paradigm shift in feedback control system design[J]. In Proceedings of the American Control Conference,2009:2451-2457.
[17] GAO Z Q, HUANG Y, HAN J Q. An alternative paradigm for control system design [J]. Proceedings of the 40th IEEE Conference on Decision and Control, 2001,12(4-7),5: 578-4585.