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

机译:基于离散事件仿真的模块化生产系统材料流量控制分布式策略的性能分析

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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:模块化生产系统是满足生产任务的越来越复杂性的优异可能性,该结果形成了同时生产的产品变体的上升数量。这些系统通常由通常的标准模块组成,可通过固定的连接运输系统随机连接;所以可以实现不同的要求。当通过高产品种类和波动的生产混合物强烈地提高系统的动态行为时,这种柔韧性可实现高度复杂的材料流量控制。对系统动态行为产生负面影响的其他因素是在每种生产中发现的寄生拖拽,如工作站的故障,或者在运输系统中,死亡时间或维护,在此工作中的应用程序中的应用程序不同的材料流动策略分析了丰富的生产环境:面向前台路由,任务面向路由,任务面向负载均衡和工件的路由,以优先级考虑的代理导向路由。这些策略是通过不同场景的两种生产系统进行了检查,在其特征上由事件离散模拟器进行了特征。

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