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Positioning and vibration suppression for multiple degrees of freedom flexible structure by genetic algorithm and input shaping

机译:遗传算法和输入整形对多自由度柔性结构的定位和振动抑制

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The main objective of this paper is to develop an innovative methodology for the vibration suppression control of the multiple degrees-of-freedom (MDOF) flexible structure. The proposed structure represented in this research as a clamped-free-free-free truss type plate is rotated by motors. The controller has two loops for tracking and vibration suppression. In addition to stabilizing the actual system, the proposed feedback control is based on a genetic algorithm (GA) to seek the primary optimal control gain for tracking and stabilization purposes. Moreover, input shaping is introduced for the control scheme that limits motion-induced elastic vibration by shaping the reference command. Experimental results are presented, demonstrating that, in the control loop, roll and yaw angles track control and elastic mode stabilization. It was also demonstrated that combining the input shaper with the proportional-integral-derivative (PID) feedback method has been shown to yield improved performance in controlling the flexible structure system. The broad range of problems discussed in this research is valuable in civil, mechanical, and aerospace engineering for flexible structures with MDOM motion.
机译:本文的主要目的是开发一种用于多自由度(MDOF)柔性结构的振动抑制控制的创新方法。在这项研究中,所提出的结构是由电动机来旋转的,其为无夹板,无夹板的桁架型板。控制器具有两个用于跟踪和抑制振动的回路。除了稳定实际系统之外,所提出的反馈控制还基于遗传算法(GA),以寻求用于跟踪和稳定目的的主要最佳控制增益。此外,为控制方案引入了输入整形,该控制方案通过对参考命令进行整形来限制运动引​​起的弹性振动。实验结果表明,在控制回路中,侧倾角和偏航角可实现跟踪控制和弹性模态稳定。还证明了将输入整形器与比例积分微分(PID)反馈方法相结合已显示出在控制柔性结构系统方面产生了改进的性能。这项研究中讨论的广泛问题在具有MDOM运动的柔性结构的土木,机械和航空航天工程中非常有价值。

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