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基于模糊PID滑模控制的外骨骼控制系统设计 被引量:2
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作者 胡飞 许德章 王毓 《安徽工程大学学报》 CAS 2017年第4期56-61,共6页
通过设计的一种下肢外骨骼机器人,建立下肢外骨骼的动力学方程及其电液伺服控制系统的阀控液压缸模型.针对下肢外骨骼步态控制过程中电液伺服位置控制系统的非线性、外在干扰等问题,设计了一种模糊PID滑模控制系统,通过滑模控制的切换函... 通过设计的一种下肢外骨骼机器人,建立下肢外骨骼的动力学方程及其电液伺服控制系统的阀控液压缸模型.针对下肢外骨骼步态控制过程中电液伺服位置控制系统的非线性、外在干扰等问题,设计了一种模糊PID滑模控制系统,通过滑模控制的切换函数,在不同情况下,结合模糊控制、PID控制的特点,选取不同的控制方式,并通过仿真分析,获知该控制器是有效可行的. 展开更多
关键词 下肢外骨骼机器人 动力学方程 电液伺服控制系统 模糊pid滑模控制
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Tuning of fuzzy PID controller for Smith predictor 被引量:11
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作者 荣辉桂 郑蕙 +1 位作者 黎峥强 夏宇翔 《Journal of Central South University》 SCIE EI CAS 2010年第3期566-571,共6页
An analytical tuning method was proposed for fuzzy PID controller used in Smith predictor in order to extend its application and improve its robustness. The fuzzy PID controller was expressed as a sliding mode control... An analytical tuning method was proposed for fuzzy PID controller used in Smith predictor in order to extend its application and improve its robustness. The fuzzy PID controller was expressed as a sliding mode control. Based on Lyapunov theory, Smith predictor was analyzed in time domain. The parameters of the fuzzy PID controller can be obtained using traditional linear control theory and sliding mode control theory. The simulation experiments were implemented. The simulation results show that the control performance, robustness and stability of the fuzzy PID controller are better than those of the PID controller in Smith predictor. 展开更多
关键词 Smith predictor Lyapunov theory fuzzy pid controller ROBUSTNESS
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Torsional vibration active control of hybrid construction machinery complex shafting 被引量:1
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作者 胡琼 阳春华 +1 位作者 刘少军 郑皓 《Journal of Central South University》 SCIE EI CAS 2014年第9期3498-3503,共6页
Due to the coaxial connection of engine, motor and pump, the dynamic characteristics of hybrid construction machinery are changed, which generates a new torsional vibration problem of multi-power sources. To reduce th... Due to the coaxial connection of engine, motor and pump, the dynamic characteristics of hybrid construction machinery are changed, which generates a new torsional vibration problem of multi-power sources. To reduce the torsional vibration of the hybrid construction machinery complex shafting, torsional vibration active control was proposed. The three-mass model of coaxial shafting of hybrid construction machinery was established. The PID control and the fuzzy sliding mode control were chosen to weaken torsional vibration by controlling the motor speed and torque. The simulation results show that the fuzzy sliding mode control has 12% overshoot of the PID control when the engine torque changes. The active control is effective and can realize smooth power switch. 展开更多
关键词 torsional vibration active control hybrid construction machinery electro-mechanical coupling fuzzy sliding modecontrol
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