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机械手鲁棒输出跟踪控制与仿真 被引量:1
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作者 杨国军 崔平远 李琳琳 《系统工程与电子技术》 EI CSCD 北大核心 2002年第1期58-61,共4页
研究了两自由度机械手终端夹持不定载荷时的输出跟踪问题。应用输入 /输出反馈线性化法和李亚普诺夫方法 ,提出了一种基于不确定项上界的机械手鲁棒输出跟踪控制器设计算法。所述控制器可确保系统输出按指数规律跟踪期望输出 ,同时相应... 研究了两自由度机械手终端夹持不定载荷时的输出跟踪问题。应用输入 /输出反馈线性化法和李亚普诺夫方法 ,提出了一种基于不确定项上界的机械手鲁棒输出跟踪控制器设计算法。所述控制器可确保系统输出按指数规律跟踪期望输出 ,同时相应闭环系统的状态一致最终有界。该方法计算简单 ,容易实现。仿真结果证明了其可行性及有效性。 展开更多
关键词 机器人 非线性系统 鲁棒输出跟踪控制 机械手 仿真
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Adaptive robust output force tracking control of pneumatic cylinder while maximizing/minimizing its stiffness 被引量:4
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作者 孟德远 陶国良 +1 位作者 班伟 钱鹏飞 《Journal of Central South University》 SCIE EI CAS 2013年第6期1510-1518,共9页
The system considered in this work consists of a cylinder which is controlled by a pair of three-way servo valves rather than a four-way one.Therefore,the cylinder output stiffness is independently controllable of the... The system considered in this work consists of a cylinder which is controlled by a pair of three-way servo valves rather than a four-way one.Therefore,the cylinder output stiffness is independently controllable of the output force.A discontinuous projection based adaptive robust controller (ARC) was constructed to achieve high-accuracy output force trajectory tracking for the system.In ARC,on-line parameter adaptation method was adopted to reduce the extent of parametric uncertainties due to the variation of friction parameters,and sliding mode control method was utilized to attenuate the effects of parameter estimation errors,unmodelled dynamics and disturbance.Furthermore,output stiffness maximization/minimization was introduced to fulfill the requirement of many robotic applications.Extensive experimental results were presented to illustrate the effectiveness and the achievable performance of the proposed scheme.For tracking a 0.5 Hz sinusoidal trajectory,maximum tracking error is 4.1 N and average tracking error is 2.2 N.Meanwhile,the output stiffness can be made and maintained near its maximum/minimum. 展开更多
关键词 servo-pneumatic systems output force control cylinder output stiffness sliding mode control adaptive control
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