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Performance analysis of distributed strategies for material flow control of modular production systems based on discrete event simulation

机译:基于离散事件模拟的模块化生产系统物料流控制分布式策略性能分析

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Modular production systems are an excellent possibility to meet the increasing complexity of production tasks, which result form a rising number of simultaneously produced product variants. These systems consist very often of standard modules, which can be connected randomly via a fixed linked transportation system; so different requirements can be accomplished. This flexibility results in a high degree of complexity for the material flow control that is increased additionally when the dynamic behaviour of the system is strongly raised by high product variety and fluctuating production mixes. Other factors having negative effects on the dynamic behaviour of the system are parasitic drag that are found in every production, like failures in work stations or in the transportation system, dead times or maintenances, in This work different material flow strategies for the application in variant rich production environments are analysed: station oriented routing, task oriented routing, task oriented routing with load balancing and workpiece centred, agent oriented routing with consideration of priorities. These strategies were examined with two models of production systems in different scenarios on their characteristics by an event discrete simulator.
机译:模块化生产系统极有可能满足生产任务日益增加的复杂性,导致同时生产的产品变型数量不断增加。这些系统通常由标准模块组成,这些模块可以通过固定的链接运输系统随机连接;因此可以实现不同的要求。这种灵活性导致物料流控制的高度复杂性,当系统的动态行为因产品种类繁多和生产组合波动而大大提高时,其灵活性会进一步增加。对系统的动态行为有负面影响的其他因素是在每个生产中都发现的寄生阻力,例如工作站或运输系统中的故障,停工时间或维护。分析了丰富的生产环境:面向工作站的路由,面向任务的路由,带有负载平衡和以工件为中心的面向任务的路由,考虑优先级的面向代理的路由。通过事件离散模拟器,在不同场景下使用两种生产系统模型对这些策略进行了特性检验。

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