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首页> 外文期刊>International Journal of Materials, Mechanics and Manufacturing >Design of an Automated Mobile Rack Using Repetitive Control Method
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Design of an Automated Mobile Rack Using Repetitive Control Method

机译:基于重复控制方法的自动移动货架设计

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摘要

Non-rail mobile rack, which is used for cargo storage, can improve the storage capacities of logistics centers. Furthermore, it has the advantage that it can be used in traditional logistics centers without making any changes or renovation, such as installing rails. However, when the rack is operated by separated drive actuators mounted on the left and the right wheels, precise position control of the wheels is necessary even if the unbalanced cargo weight on the rack would affect the control. Therefore, internal synchronization control for position tracking between the left and right wheels on the non-rail mobile rack is necessary in this study. In addition, external synchronization control for realizing the same straight movements between mobile racks is necessary. For the internal and the external synchronization control, we propose a synchronization control algorithm based on the repetitive control theory. An internal synchronization control algorithm with repetitive control theory requires the application of the robust servo control method owing to parameter variations. In this case, we can set up the gains for the robust servo control system by considering the cargo variations on the mobile rack. Furthermore, for developing the external synchronization control algorithm, we use a double repetitive control system to perform synchronization control between mobile racks. The efficiency of the proposed control algorithm will be verified by simulation and experimental results. The proposed algorithm can be easily applied in the industry.
机译:用于货物存储的无轨移动式货架可以提高物流中心的存储能力。此外,它的优点是可以在传统的物流中心中使用它,而无需进行任何更改或翻新,例如安装导轨。但是,当机架由安装在左右车轮上的分离的驱动执行器操作时,即使机架上不平衡的货物重量会影响控制,也必须对车轮进行精确的位置控制。因此,在这项研究中,需要内部同步控制来控制无轨移动机架上左右车轮之间的位置。另外,需要外部同步控制来实现移动机架之间的相同直线运动。对于内部和外部同步控制,我们提出了基于重复控制理论的同步控制算法。具有重复控制理论的内部同步控制算法由于参数变化而需要应用鲁棒的伺服控制方法。在这种情况下,我们可以通过考虑移动式货架上的货物变化来设置鲁棒的伺服控制系统的收益。此外,为了开发外部同步控制算法,我们使用双重重复控制系统在移动机架之间执行同步控制。仿真和实验结果将验证所提出控制算法的有效性。所提出的算法可以很容易地在工业中应用。

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