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Optimal control of production and remanufacturing for a recovery system with perishable items

机译:具有易腐物品的回收系统的生产和再制造的最佳控制

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摘要

In this paper, a recovery system for perishable items is introduced and developed considering production and remanufacturing capacity constraints. The system consists of two inventories, one for serviceable items and the other for returned and recoverable items. Taking the production cost, remanufacturing cost, disposal cost, and the loss caused by deterioration into account, the optimal control model is established to minimise the total cost. The continuous-time dynamic optimal production, remanufacturing and disposal rates that minimise the total cost are obtained using Pontryagin's maximum principle. Additionally, to highlight the advantage of the dynamic optimal policy, the case of the static optimal policy that does not vary with time is investigated and compared with the dynamic policy. It is shown that the dynamic optimal policy is significantly better than the static optimal policy. A numerical example is provided to illustrate the proposed methods.
机译:在本文中,考虑到生产和再制造能力的限制,引入并开发了一种易腐物品回收系统。该系统由两个库存组成,一个库存用于可维修物品,另一个库存用于退货和可回收物品。考虑生产成本,再制造成本,处置成本以及变质造成的损失,建立了最优控制模型以使总成本最小化。使用Pontryagin的最大原理,可以使总成本最小化的连续动态优化生产,再制造和处置速率。另外,为了突出动态最优策略的优势,研究了静态最优策略不随时间变化的情况,并将其与动态策略进行了比较。结果表明,动态最优策略明显优于静态最优策略。提供了一个数值示例来说明所提出的方法。

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