首页> 外文会议>Conference on engineering systems design and analysis;Biennial conference on engineering systems design and analysis;ESDA 2008 >CONTROL OF A TWO-STAGE ASSEMBLE-TO-ORDER MANUFACTURING SYSTEM UNDER DEMAND AND CAPACITY UNCERTAINTIES
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CONTROL OF A TWO-STAGE ASSEMBLE-TO-ORDER MANUFACTURING SYSTEM UNDER DEMAND AND CAPACITY UNCERTAINTIES

机译:具有需求和容量不确定性的两阶段按订单生产系统的控制

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This paper focuses on the production and assembly control in a two-stage assemble-to-order (ATO) manufacturing system. An ATO manufacturing system keeps inventory only at the component level, and products are assembled only after a customer order is received. ATO systems have a widespread use in various industries where mass customization is popular. The motivation of the problem is due to the need for firms in this setting to effectively coordinate the production of components and allocate the assembly line capacity shared across many different products. We model component production lines and a downstream product assembly line with M/M/1 queues in order to identify optimal policies regarding a firm's decision on how many components of each type to produce and how to prioritize orders for various products. We also propose an effective heuristic solution that is robust with respect to the number of product alternatives offered.
机译:本文着重于两阶段按订单制造(ATO)制造系统中的生产和组装控制。 ATO制造系统仅在组件级别保留库存,并且仅在收到客户订单后才组装产品。 ATO系统在大规模定制流行的各个行业中得到了广泛使用。该问题的起因是由于在这种情况下公司需要有效地协调组件的生产并分配在许多不同产品之间共享的组装线产能。我们对组件生产线和带有M / M / 1队列的下游产品组装线进行建模,以便确定关于公司决定生产每种类型的组件数量以及如何为各种产品确定订单优先级的决策的最佳策略。我们还提出了一种有效的启发式解决方案,该解决方案相对于所提供的产品替代方案的数量是可靠的。

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