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Recovery of sensor embedded washing machines using a multi-kanban controlled disassembly line

机译:使用多看板控制的拆装线回收传感器嵌入式洗衣机

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Product recovery involves the recovery of materials and components from returned or end-of-life products. Disassembly, an element of product recovery, is the systematic separation of an assembly into its components, subassemblies or other groupings. Stricter environmental regulations together with dramatic decrease in natural resources and landfills have increased the importance of disassembly as all product recovery options require some level of disassembly. Due to changes made during the lifetime of a product by customers or service personnel, the number and the version of components prior to disassembly is unknown. Customers may also discriminate between and demand different versions of components. The existence of non-functional components further adds to the uncertainty associated with disassembly yield. Sensors implanted into products during their production can address this uncertainty by providing information on the number, condition and version of components prior to disassembly. In this study, we evaluate the impact of sensor embedded products (SEPs) on the various performance measures of a washing machine (WM) disassembly line controlled by a multi-kanban system, which takes into consideration the highly stochastic behavior of the line while managing material and kanban flows. First, separate design of experiments studies based on orthogonal arrays are performed for conventional products and SEPs. In order to observe the response of each experiment, detailed discrete event simulation (DES) models for both types of products are developed considering the precedence relationships among the components of a WM. Then, pair-wise t-tests are conducted to compare the two cases based on different performance measures. According to the results, SEPs provide significant reductions in all costs (viz., backorder, holding, disassembly, disposal, testing and transportation) while increasing revenue and profit.
机译:产品回收涉及从退回或报废产品中回收材料和组件。拆卸是产品回收的要素,是将组件系统地分离为其组件,子组件或其他分组。严格的环境法规以及自然资源和垃圾填埋场的急剧减少,增加了拆卸的重要性,因为所有产品回收选项都需要一定程度的拆卸。由于客户或服务人员在产品生命周期内进行的更改,因此在拆卸之前,组件的数量和版本是未知的。客户还可以区分组件并要求使用不同版本的组件。非功能性成分的存在进一步增加了与拆卸成品率相关的不确定性。在产品生产过程中植入产品的传感器可以通过在拆卸前提供有关部件的数量,状况和版本的信息来解决这种不确定性。在这项研究中,我们评估了传感器嵌入式产品(SEP)对由多看板系统控制的洗衣机(WM)拆卸生产线的各种性能指标的影响,该方法考虑了生产线的高度随机行为,同时进行管理物质和看板流。首先,针对常规产品和SEP执行基于正交阵列的实验研究的单独设计。为了观察每个实验的响应,考虑到WM组件之间的优先关系,针对这两种类型的产品开发了详细的离散事件模拟(DES)模型。然后,进行成对t检验以根据不同的性能指标比较这两种情况。根据结果​​,标准必要专利可显着降低所有成本(即,延期交货,持有,拆卸,处置,测试和运输),同时增加收入和利润。

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