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Comparison of Graph Generation Methods for Structural Complexity Based Assembly Time Estimation

机译:基于结构复杂度的装配时间估计的图形生成方法比较

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This paper compares two different methods of graph generation for input into the complexity connectivity method to estimate the assembly time of a product. The complexity connectivity method builds predictive models for assembly time based on 29 complexity metrics applied to the product graphs. Previously, the part connection graph was manually created, but recently the assembly mate method and the interference detection method have introduced new automated tools for creating the part connectivity graphs. These graph generation methods are compared on their ability to predict the assembly time of multiple products. For this research, eleven consumers products are used to train an artificial neural network and three products are reserved for testing. The results indicate that both the assembly mate method and the interference detection method can create connectivity graphs that predict the assembly time of a product to within 45% of the target time. The interference detection method showed less variability than the assembly mate method in the time estimations. The assembly mate method is limited to only solid-works assembly files, while the interference detection method is more flexible and can operate on different file formats including IGES, STEP, and Parasolid. Overall, both of the graph generation methods provide a suitable automated tool to form the connectivity graph, but the interference detection method provides less variance in predicting the assembly time and is more flexible in terms of file types that can be used.
机译:本文比较了两种不同的图形生成方法,将它们输入到复杂性连接方法中,以估计产品的组装时间。复杂性连通性方法基于应用于产品图的29个复杂性指标,为装配时间建立了预测模型。以前,零件连接图是手动创建的,但是最近装配配合方法和干涉检测方法引入了新的自动化工具来创建零件连接图。比较了这些图形生成方法在预测多种产品装配时间方面的能力。在本研究中,使用了11种消费者产品来训练人工神经网络,并保留了3种产品用于测试。结果表明,装配配合方法和干涉检测方法都可以创建连通性图,以预测产品的装配时间在目标时间的45%以内。在时间估计中,干涉检测方法的可变性比装配配合方法小。装配配合方法仅限于SolidWorks装配文件,而干涉检测方法则更为灵活,可以在IGES,STEP和Parasolid等不同文件格式上运行。总体而言,两种图形生成方法都提供了一种合适的自动化工具来形成连接图,但是干扰检测方法在预测装配时间方面提供了较小的差异,并且在可以使用的文件类型方面更加灵活。

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