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ROBUST CONTROL STRATEGIES FOR MULTI-INVENTORY SYSTEMS WITH AVERAGE FLOW CONSTRAINTS

机译:具有平均流量约束的多库存系统的强大控制策略

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In this paper we consider multi-inventory systems in presence of uncertain demand. We assume that i) demand is unknown but bounded in an assigned compact set and ii) the control inputs (controlled flows) are subject to assigned constraints. Given a long-term average demand, we select a nominal flow that feeds such a demand. In this context, we are interested in a control strategy that meets at each time all possible current demands and achieves the nominal flow in the average, We provide necessary and sufficient conditions for such a strategy to exist and we characterize the set of achievable flows. Such conditions are based on linear programming and thus they are constructive. In the special case of a static flow (i.e. a system with 0-capacity buffers) we show that the strategy must be affine. The dynamic problem can be solved by a linear-saturated control strategy (inspired by the previous one). We provide numerical analysis and illustrating examples.
机译:在本文中,我们考虑存在不确定需求的多库存系统。我们假设i)需求未知,但在分配的紧凑型集中界定,II)控制输入(受控流)受到分配的约束。鉴于长期的平均需求,我们选择了一种归因于这种需求的标称流量。在这方面,我们对一次符合所有可能的当前需求并实现平均值的标称流量的控制策略感兴趣,我们为这种策略提供了必要的和充分条件,并为可实现的流动表征了这些策略。这种条件基于线性编程,因此它们是建设性的。在静态流动的特殊情况下(即一个具有0容量缓冲区的系统),我们表明该策略必须是仿佛。可以通过线性饱和的控制策略(由前一个启发)来解决动态问题。我们提供数值分析和说明示例。

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