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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >LQ Optimal Sliding Mode Control of Periodic Review Perishable Inventories with Transportation Losses
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LQ Optimal Sliding Mode Control of Periodic Review Perishable Inventories with Transportation Losses

机译:具有运输损失的定期复查易腐物品的LQ最优滑模控制。

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In this work we apply the control-theoretic approach to design a new replenishment strategy for inventory systems with perishable stock. Such systems are supposed to effectively satisfy an unknown and permanently time-varying consumers’ demand. The main obstacle of achieving this goal is the need of obtaining supplies from a distant source. During the supply process goods are inevitably lost due to various causes. Furthermore, those goods which successfully arrive at the distribution center still deteriorate while stored in its warehouse. We explicitly take into account both of these factors in designing our control strategy. We propose a sliding mode strategy and choose its parameters to minimize a quadratic quality criterion. This approach allows us to ameliorate the bullwhip effect (the amplification of the demand variations when going up in the supply chain). The control strategy proposed in this work ensures bounded orders, guarantees full consumers’ demand satisfaction, and eliminates the risk of exceeding the warehouse capacity. These properties are stated in three theorems and proved in the paper.
机译:在这项工作中,我们采用控制理论方法来设计具有易变质库存的库存系统的新补货策略。这样的系统应该能够有效地满足未知且永久性的时变消费者的需求。实现这一目标的主要障碍是需要从遥远的地方获取物资。在供应过程中,由于各种原因不可避免地会丢失货物。此外,那些成功到达配送中心的货物在存储在仓库中时仍会变质。在设计控制策略时,我们明确考虑了这两个因素。我们提出一种滑模策略并选择其参数以最小化二次质量标准。这种方法使我们能够改善牛鞭效应(在供应链中上升时需求变化的放大)。在这项工作中提出的控制策略可确保订单有限,确保完全满足消费者的需求,并消除了超出仓库容量的风险。这些性质用三个定理表示,并在论文中得到证明。

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