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Inventory control of a class of logistic networks

机译:一类物流网络的库存控制

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This paper focuses on a prediction-based control for a class of convolution systems subject to constant input delays, also known as the reduction approach. We propose here a characterization of the D-invariance property of polytope sets for continuous-time systems. Our motivations come from production management, where a general model for a production network is considered. The system is subject to product losses and multiple delays, with bounded demand. This model is transformed into an equivalent free-delay system using Artstein reduction. The question of regulating the inventory levels of the nodes of this production network is then reduced to a pair of sub-problems, that are the regulation of the equivalent system without delay, and the relationship between the output of the system and that of the reduced system. A pair of conditions is therefore obtained, for the verification that a large class of control solutions allow to satisfy the external demand, while meeting the constraints that are imposed to the system. At the end, explicit conditions are found for an example of a supply chain with two nodes. (C) 2020 Elsevier B.V. All rights reserved.
机译:本文主要研究一类具有恒定输入延迟的卷积系统的基于预测的控制,也称为降阶方法。本文提出了连续时间系统多面体集的D-不变性的一个刻画。我们的动机来自生产管理,其中考虑了生产网络的一般模型。该系统受到产品损失和多次延迟的影响,需求有限。利用Artstein约化将该模型转化为等效的自由时滞系统。然后,将调节生产网络节点库存水平的问题归结为一对子问题,即无延迟调节等效系统,以及系统输出与简化系统输出之间的关系。因此,获得了一对条件,用于验证一大类控制解决方案是否允许满足外部需求,同时满足对系统施加的约束。最后,以一个具有两个节点的供应链为例,给出了显式条件。(C) 2020爱思唯尔B.V.版权所有。

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