论文标题

在供应链中断的情况下,一种新型的多代理调度机制,用于适应生产计划

A Novel Multi-Agent Scheduling Mechanism for Adaptation of Production Plans in Case of Supply Chain Disruptions

论文作者

Tan, Jing, Braubach, Lars, Jander, Kai, Xu, Rongjun, Chen, Kai

论文摘要

制造公司通常使用复杂的生产计划系统优化生产步骤,通常提供近乎最佳的解决方案。作为交付近乎理想的时间表的缺点,计划系统具有很高的计算需求,导致计算数小时。在正常情况下,如果在执行时间表之前有足够的缓冲时间(例如第二天晚上)。但是,如果发生意外的干扰,例如延迟的零件交货或缺陷制造商品,计划的时间表可能无效,而迅速的重新植入变得必要。由于计算要求,这种立即进行的重新植入不适合现有的最佳规划师。本文提出了一种新颖的解决方案,可以在使用现有计划的不同类型的破坏情况下有效,有效地进行重新设计。该方法是基于尽可能多地遵守现有时间表的想法,根据有限的本地变化来调整它。为此,已经设计了一种基于代理的调度机制,其中代理代表材料和生产地点,并使用本地优化技术和谈判来生成适应的(足够但非最佳)的时间表。使用华为的实际生产数据对该方法进行了评估,表明有效的时间表在短时间内生产。该系统已被实施为概念验证,目前已重新实现并转移到基于Jadex代理平台的生产系统中。

Manufacturing companies typically use sophisticated production planning systems optimizing production steps, often delivering near-optimal solutions. As a downside for delivering a near-optimal schedule, planning systems have high computational demands resulting in hours of computation. Under normal circumstances this is not issue if there is enough buffer time before implementation of the schedule (e.g. at night for the next day). However, in case of unexpected disruptions such as delayed part deliveries or defectively manufactured goods, the planned schedule may become invalid and swift replanning becomes necessary. Such immediate replanning is unsuited for existing optimal planners due to the computational requirements. This paper proposes a novel solution that can effectively and efficiently perform replanning in case of different types of disruptions using an existing plan. The approach is based on the idea to adhere to the existing schedule as much as possible, adapting it based on limited local changes. For that purpose an agent-based scheduling mechanism has been devised, in which agents represent materials and production sites and use local optimization techniques and negotiations to generate an adapted (sufficient, but non-optimal) schedule. The approach has been evaluated using real production data from Huawei, showing that efficient schedules are produced in short time. The system has been implemented as proof of concept and is currently reimplemented and transferred to a production system based on the Jadex agent platform.

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