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基于反推自适应控制的舵机伺服系统设计
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作者 秦硕 孙秀霞 +1 位作者 侯颖 余修端 《弹箭与制导学报》 CSCD 北大核心 2008年第2期63-66,共4页
基于反推控制理论对飞控系统舵回路进行设计。针对舵机内部参数的不确定性和外部负载力矩的扰动,在构造辅助控制输入时引入积分环节。通过适当选取李雅普诺夫函数,使分步构造的控制输入信号有界,并确保角位置跟踪误差能从所有可能的初... 基于反推控制理论对飞控系统舵回路进行设计。针对舵机内部参数的不确定性和外部负载力矩的扰动,在构造辅助控制输入时引入积分环节。通过适当选取李雅普诺夫函数,使分步构造的控制输入信号有界,并确保角位置跟踪误差能从所有可能的初始状态收敛。数字仿真结果表明,该设计方法增强了舵回路的鲁棒性并提高了稳态控制精度。 展开更多
关键词 舵回路 反推自适应控制 鲁棒性
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Adaptive backstepping control for levitation system with load uncertainties and external disturbances 被引量:6
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作者 李金辉 李杰 +1 位作者 余佩倡 王连春 《Journal of Central South University》 SCIE EI CAS 2014年第12期4478-4488,共11页
To explore the precise dynamic response of the levitation system with active controller, a maglev guide way-electromagnet-air spring-cabin coupled model is derived firstly. Based on the mathematical model, it shows th... To explore the precise dynamic response of the levitation system with active controller, a maglev guide way-electromagnet-air spring-cabin coupled model is derived firstly. Based on the mathematical model, it shows that the inherent nonlinearity, inner coupling, misalignments between the sensors and actuators, load uncertainties and external disturbances are the main issues that should be solved in engineering. Under the assumptions that the loads and external disturbance are measurable, the backstepping module controller developed in this work can tackle the above problems effectively. In reality, the load is uncertain due to the additions of luggage and passengers, which will degrade the dynamic performance. A load estimation algorithm is introduced to track the actual load asymptotically and eliminate its influence by tuning the parameters of controller online. Furthermore,considering the external disturbances generated by crosswind, pulling motor and air springs, the extended state observer is employed to estimate and suppress the external disturbance. Finally, results of numerical simulations illustrating closed-loop performance are provided. 展开更多
关键词 maglev backstepping control nonlinearity mass variation adaptiveness extended state observer
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