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Robust inventory control of production systems subject to uncertainties on demand and lead times

机译:生产系统的强大库存控制受需求和交货期不确定性的影响

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In this paper, we are interested in the controller design for constrained production systems subject to uncertainties on the demand and the production delays. The case study focuses on the inventory regulation problem in production systems which must respond to the customer demands of finite products. Such systems are characterised by the presence of delays due to production processes, the saturation of the input command and the constraints due to the finite capacities of stocks. In our study, we assume that (i) the customer demands are considered to be unknown but bounded by a given value, (ii) both the control input and the inventory output are subject to assigned constraints, and (iii) the production delay is defined with an uncertainty interval. Our model includes two factors that commonly have an impact on the supply chain performances and cause the bullwhip effect: the variability of the customer demand and the uncertainty on the lead time. The proposed approach is based on a saturated predictor-feedback structure, in which the constraints and the physical limitations of the production system are taken into account. The concepts used in this approach are the BIBO-stability and the D-invariance properties. We examine then the bullwhip effect phenomenon, which is an important observation in supply chain management. In order to study the robustness of the control system state feedback, the proposed approach gives necessary and sufficient conditions on the controller parameters, for which the system requirements will be completely met, and permits to ensure the bounds of solutions for the control parameters. The accuracy of the proposed methodology is illustrated through simulation result which demonstrates that the bullwhip effect can be reduced, but not completely eliminated, using a saturated command and a predictor-feedback structure.
机译:在本文中,我们对受限于需求和生产延迟不确定性的受限生产系统的控制器设计感兴趣。案例研究着重于生产系统中的库存调节问题,该问题必须响应客户对有限产品的需求。这样的系统的特征在于由于生产过程而存在的延迟,输入命令的饱和以及由于库存量有限而造成的限制。在我们的研究中,我们假设(i)客户需求被认为是未知的但受给定值限制,(ii)控制输入和库存输出均受分配的约束,并且(iii)生产延迟为用不确定区间来定义。我们的模型包括两个通常会影响供应链绩效并引起牛鞭效应的因素:客户需求的可变性和交货时间的不确定性。所提出的方法基于饱和的预测器-反馈结构,其中考虑了生产系统的约束和物理限制。此方法中使用的概念是BIBO稳定性和D不变性。然后我们检查牛鞭效应现象,这是供应链管理中的重要观察结果。为了研究控制系统状态反馈的鲁棒性,所提出的方法在控制器参数上给出了必要和充分的条件,可以完全满足系统要求,并且可以确保控制参数解的界限。仿真结果表明了所提方法的准确性,仿真结果表明,使用饱和命令和预测器-反馈结构可以减少但不能完全消除牛鞭效应。

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