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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >Positioning control of a pneumatic stage under different pipe length: Performance improvement of PDD2 control and suppression of flow disturbance
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Positioning control of a pneumatic stage under different pipe length: Performance improvement of PDD2 control and suppression of flow disturbance

机译:气动级在不同管长下的定位控制:PDD 2 控制的性能改进和流量扰动的抑制

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In this study, we consider the positioning of a pneumatic stage in order to compensate effects of different length of pipes, which connect servo valves and cylinders. Since, in industrial scenes, it is difficult to use pipes of the same length due to the structure of industries, the length of each pipe is often different. In this case, the characteristic of the pneumatic system, which consists of the pipes, servo valves, and chambers, changes in accordance with the pipe length. It leads to two issues: The first one is that the performance of proportional-derivative-double derivative (PDD~(2)) control, which is effective for the control of pneumatic actuators, is degraded. To overcome this issue, the parameter of a pre-compensator for the PDD~(2) control is tuned. The suitable value of this tuned parameter increases with the length of the pipes. The second one is that the effects of flow disturbance increase due to the different pipe length. When the length of the pipes is not same, it is probable that the magnitude of flow disturbance transmitted to each pipe is different. For this reason, multiple flow disturbance observers (FDOBs) are implemented in a control system. Experimental results show that the repeatability of the positioning is improved by using the FDOBs.
机译:在这项研究中,我们考虑了气动平台的位置,以补偿连接伺服阀和气缸的不同长度管道的影响。由于在工业场景中,由于工业结构的原因,很难使用相同长度的管道,因此每个管道的长度通常是不同的。在这种情况下,由管道,伺服阀和腔室组成的气动系统的特性会根据管道长度而变化。它导致两个问题:第一个问题是对气动执行器的控制有效的比例-微分-双导数(PDD〜(2))控制性能下降。为了克服这个问题,对PDD〜(2)控制的预补偿器参数进行了调整。此调整参数的合适值随管道长度的增加而增加。第二个原因是,由于不同的管长,流动扰动的影响增加。当管道的长度不同时,传递到各管道的流动扰动的大小可能会不同。因此,在控制系统中实现了多个流量扰动观测器(FDOB)。实验结果表明,使用FDOB可以提高定位的可重复性。

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