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首页> 外文期刊>Journal of Manufacturing Systems >Transition Of Interarrival Time Patterns Between Automated And Manual Configurations Of Assembly Systems
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Transition Of Interarrival Time Patterns Between Automated And Manual Configurations Of Assembly Systems

机译:装配系统的自动配置和手动配置之间的到达时间模式的转换

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摘要

The paradigm of hybrid automatic/manual assembly systems has recently been extended by reconfigurable systems that allow exchanging manual and automated production modules with minimum interruption of the system control and operation. However, both types of assembly systems exhibit different interarrival time patterns for layouts that employ asynchronous workpiece transport on tracks with multiple routes and loops. In this work, it has been shown analytically that for Gaussian processing time distributions the queue length follows heavy-tailed unimodal and bimodal distributions. Based on the resulting outlier probability, an analytical model for predicting the limits of allowable processing time variance for deterministic interarrival time models is proposed. This model is positively validated with simulation analysis by comparing different levels of processing time variance. It is concluded that established design practices such as cycle-time balancing and synchronization should be avoided in reconfigurable hybrid assembly system design because they introduce interarrival-time turbulence in the automated system.
机译:混合自动/手动装配系统的范例最近已通过可重新配置的系统进行了扩展,该系统允许在不中断系统控制和操作的情况下交换手动和自动生产模块。但是,两种类型的装配系统在布局上均具有不同的到达时间模式,这些布局在具有多个路径和回路的轨道上采用异步工件传输。在这项工作中,分析表明,对于高斯处理时间分布,队列长度遵循重尾单峰和双峰分布。基于所得的异常值概率,提出了一种用于确定性到达时间模型的预测处理时间方差极限的分析模型。通过比较不同水平的处理时间差异,该模型已通过仿真分析得到了肯定验证。结论是,在可重配置的混合装配系统设计中应避免采用既定的设计实践,例如周期时间平衡和同步,因为它们在自动化系统中引入了到达时间之间的湍流。

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