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An integrated control strategy to solve the disturbance decoupling problem for max-plus linear systems with applications to a high throughput screening system

机译:一种集成控制策略,用于解决最大加线性系统的干扰解耦问题,并将其应用于高通量筛选系统

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This paper presents the new investigations on the disturbance decoupling problem (DDP) for the geometric control of max-plus linear systems. The classical DDP concept in the geometric control theory means that the controlled outputs will not be changed by any disturbances. In practical manufacturing systems, solving for the DDP would require further delays on the output parts than the existing delays caused by the system breakdown, The new proposed modified disturbance decoupling problem (MDDP) in this paper ensures that the controlled output signals will not be delayed more than the existing delays caused by the disturbances in order to achieve the just-in-time optimal control. Furthermore, this paper presents the integration of output feedback and open-loop control strategies to solve for the MDDP, as well as for the DDP. If these controls can only solve for the MDDP, but not for the DDP, an evaluation principle is established to compare the distance between two output signals generated by controls solving for the MDDP and DDP, respectively. This distance can be interpreted as the number of tokens or firings that are needed in order for the controls to solve for the DDP. Moreover, another alternative approach is finding a new disturbance mapping in order to guarantee the solvability of the DDP by the same optimal control for the MDDP. The main results of this paper are illustrated by using a timed event graph model of a high throughput screening system in drug discovery. Published by Elsevier Ltd.
机译:本文提出了关于最大加线性系统几何控制的干扰解耦问题(DDP)的新研究。几何控制理论中的经典DDP概念意味着受控输出不会受到任何干扰的影响。在实际的制造系统中,解决DDP所需的输出零件延迟要比系统故障引起的现有延迟还要大。本文提出的新的改进的干扰去耦问题(MDDP)确保了受控输出信号不会被延迟为了实现及时的最佳控制,不仅仅存在由干扰引起的现有延迟。此外,本文介绍了输出反馈和开环控制策略的集成,以解决MDDP以及DDP。如果这些控件只能解决MDDP,而不能解决DDP,则建立评估原理,以比较由分别解决MDDP和DDP的控件生成的两个输出信号之间的距离。此距离可以解释为控件解决DDP所需的令牌或触发次数。此外,另一种替代方法是找到新的干扰映射,以通过对MDDP的相同最佳控制来保证DDP的可解决性。通过在药物发现中使用高通量筛选系统的定时事件图模型来说明本文的主要结果。由Elsevier Ltd.发布

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