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Experimental study of active vibration control for flexible beam by using a Stewart platform manipulator

机译:使用Stewart平台机械手对柔性梁主动振动控制的实验研究

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Experiments of active vibration control for flexible beam are studied, with a Stewart platform manipulator (SPM) employed as an active equipment at the bottom of the beam. The dynamic modal of the rigid-flexible coupling system composed of the upper platform of the SPM and the flexible beam is built, and an auto disturbances rejection controller (ADRC) is designed. Then based on the dSPACE real-time simulation system, the control test system for the beam is built, on which the auto disturbances rejection control experiments are carried out. Experimental results show the rate of amplitude attenuation using ADRC is almost 10 times faster than the free attenuation. For comparison purpose, a classic LQG controller is applied in another experiment on the same test system. The results of the two experiments show that ADRC has a better performance than LQG controller for the nonlinear system. At the same time, the results verify the effectiveness of the control conducted by SPM at the bottom of the beam.
机译:研究了柔性光束的主动振动控制的实验,用斯图尔特平台机械手(SPM)作为光束底部的主动设备。构建了由SPM和柔性梁的上部平台组成的刚性柔性耦合系统的动态模态,并且设计了自动干扰抑制控制器(ADRC)。然后基于DSPACE实时仿真系统,构建了梁的控制测试系统,在此进行自动干扰抑制控制实验。实验结果表明,使用ADRC的幅度衰减速度比自由衰减快10倍。为了比较目的,经典的LQG控制器应用于同一测试系统的另一个实验中。两个实验的结果表明,ADRC具有比非线性系统的LQG控制器更好的性能。同时,结果验证了SPM在光束底部进行的控制的有效性。

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